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Sheet: Version History
| Version History CBAM Self Assessment Tool for Importers to the EU | · | · |
|---|---|---|
| Version | Date | Version Notes |
| 1 | 23 September 2024 | First version published on the CBAM website |
| 1.1 | 28 March 2025 | CN codes for urea updated in line the recent update in customs legislation: 3102 10 10 replaced by 3102 10 12, 3102 10 15, and 3102 10 19 |
Sheet: CBAM Self Assessment Tool
| CBAM Self Assessment Tool for Importers to the EU | · | · | · | · | · | · |
|---|---|---|---|---|---|---|
| · | · | · | · | · | · | · |
| The purpose of the CBAM Self Assessment Tool is to provide importers to the EU with the possibility to get a quick overview on whether the imported goods are subject to CBAM during the transitional period, what the CBAM reporting requirements for that particular type of good are, and where to find further information. Please enter the CN Code and select the correct options in the menus below (red cells). If all information is entered correctly, the green cells will show the outcome of the CBAM Self Assessment and the reporting requirements for the indicated good. | · | · | · | · | CBAM | Direct and indirect |
| CN Code of good (enter 8 digit CN number using the following format: XXXXXXXX) | The Combined Nomenclature (CN) is a tool for classifying goods, set up to meet the requirements both of the Common Customs Tariff and of the EU's external trade statistics. It is a further development of the World Customs Organization's Harmonized System nomenclature. Please find more information on the website. | 76169990 | · | · | Yes | Yes |
| Country of origin of good (choose from menu) | The country of origin is the country in which the good was produced. |
e. Please find more information on the website. | 76169990 | · | · | Yes | Yes | | Country of origin of good (choose from menu) | The country of origin is the country in which the good was produced. In the case of multiple countries involved in the production process, the country of origin is the country in which goods "underwent their last, substantial, economically-justified processing or working, in an undertaking equipped for that purpose, resulting in the manufacture of a new product or representing an important stage of manufacture" (Article 60(2) of the Union Customs Code (UCC) (Regulation (EU) No 952/2013)). | Singapore | · | · | Yes | · | | Value of CBAM goods in consignment (choose from menu) | Consignment refers to products that are either (a) sent simultaneously from one exporter to one consignee; or (b) covered by a single transport document covering their shipment from the exporter to the consignee or, in the absence of such document, by a single invoice. Value of goods refers to the total intrinsic value of CBAM goods in the consignment. | More than 150 Euros | · | · | Yes | · | | Purpose of import (choose from menu) | Free circulation: Non-Union goods that are released for free circulation in order to be sold on EU market like any product produced in the EU. Free circulation as returned goods: Non-Union goods, previously exported as Union goods, that are released for free circulation as returned goods, benefitting from duty exemption under certain conditions, in accordance with Article 203 of the Union Customs Code.
exported as Union goods, that are released for free circulation as returned goods, benefitting from duty exemption under certain conditions, in accordance with Article 203 of the Union Customs Code. None of the above: For example, non-Union goods placed under temporary admission in the customs territory of the EU, or non-Union goods placed under an inward processing scheme (non-Union goods used in the customs territory of the EU in one or more processing operations without such goods being subject to import duty and other charges as provided for under other relevant provisions in force, with a view to be re-exported or released for free circulation). | released for free circulation | · | · | Yes | · | | Does CBAM apply? | · | Yes | · | · | · | · | | Data to report and ask from supplier? | Quantity of goods | Quantity of goods imported expressed in tonnes | · | · | · | · | | · | Country of origin | Country of origin | · | · | · | · | | · | Installation data | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | · | · | · | · | | · | Direct Emissions | Yes, specific direct embedded emissions need to be reported. | · | · | · | · | | · | Production routes | The production route needs to be reported.
allation | · | · | · | · | | · | Direct Emissions | Yes, specific direct embedded emissions need to be reported. | · | · | · | · | | · | Production routes | The production route needs to be reported. This could be: Aluminium products, Integrated production with primary melting, Integrated production with secondary melting, Integrated with mixed primary and secondary production | · | · | · | · | | · | Emissions qualifying parameters | Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. If the total content of elements other than aluminium exceeds 1 %, the total percentage of such elements. | · | · | · | · | | · | Indirect Emissions | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | · | · | · | · | | · | Data quality | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | · | · | · | · | | · | Carbon price due | Carbon price due in third country, where relevant | · | · | · | · | | More information | · | CBAM Regulation | · | · | · | · | | · | · | Guidance documents & Communication templates | · | · | · | · | | · | · | Sectoral information | · | · | · | · | | · | · | FAQ | · | · | · | · | | The European Commission maintains this tool to facilitate the implementation of the Carbon Border Adjustment Mechanism (CBAM) during the transitional period until 31 December 2025. Our goal is to keep this tool timely and accurate. If errors are brought to our attention, we will try to correct them. However, the Commission accepts no responsibility or liability whatsoever with regards to the information provided by this tool. It cannot be guaranteed that the tool exactly reproduces the officially adopted legislation. Only the Official Journal of the European Union (the printed edition or, since 1 July 2013, the electronic edition on the EUR-Lex website) is authentic and produces legal effects. | · | · | · | · | · | · | | DG TAXUD, European Commission. | · | · | · | · | · | · | | Version 1.1: 28 March 2025 | · | · | · | · | · | · |
Sheet: CN Codes
| Main Category | Aggregated Category | CN Code | Goods concerned | CBAM Applies | Indirect Emissions | Quantity | Country | Installation data | Special provisions | Production Routes | Production Routes_old | Precursors | Extra | Indirect Emissions Data | Data quality | Carbon Price Abroad |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Cement | Calcined clay | 25070080 | Other kaolinic clays | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Clays falling under CN code 2507 00 80 which are not calcined, are assigned embedded emissions of zero. They shall be included in the CBAM report, but no additional information from the producer of the clay is required. | Calcined clay | For calcined clay, direct emissions monitoring shall encompass: — All processes directly or indirectly linked to the production processes, such as raw material preparation, mixing, drying, and calcining, and flue gas cleaning. — CO2 emissions from the combustion of fuels as well as from raw materials, where relevant. | None | Whether or not the clay is calcined. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. |
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Cement | Cement clinkers | 25231000 | Cement clinkers | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | No distinction shall be made between grey and white cement clinker | Cement clinker | For cement clinker, direct emissions monitoring shall encompass: — Calcination of limestone and other carbonates in the raw materials, conventional fossil kiln fuels, alternative fossil_x0002_based kiln fuels and raw materials, biomass kiln fuels (such as waste-derived fuels), non-kiln fuels, non-carbonate carbon content of limestone and shales, or alternative raw materials such as fly ash used in the raw meal in the kiln and raw materials used for flue gas scrubbing. — The additional provisions of Section B.9.2 of Annex III shall apply.
s, or alternative raw materials such as fly ash used in the raw meal in the kiln and raw materials used for flue gas scrubbing. — The additional provisions of Section B.9.2 of Annex III shall apply. | None | None | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Cement | Cement | 25232100 | White Portland cement, whether or not artificially coloured | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | None | Cement | For cement, direct emissions monitoring shall encompass: — All CO2 emissions from fuel combustion, where relevant for drying of materials. | Cement clinker; Calcined clay, if used in the process | Mass ratio of tonnes cement clinker consumed per produced tonne of cement (clinker to cement ratio expressed in per cent). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced.
clinker consumed per produced tonne of cement (clinker to cement ratio expressed in per cent). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Cement | Cement | 25232900 | Other Portland cement | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | None | Cement | For cement, direct emissions monitoring shall encompass: — All CO2 emissions from fuel combustion, where relevant for drying of materials. | Cement clinker; Calcined clay, if used in the process | Mass ratio of tonnes cement clinker consumed per produced tonne of cement (clinker to cement ratio expressed in per cent). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Cement | Aluminous cement | 25233000 | Aluminous cement | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | None | Aluminuous cement | For aluminous cement, direct emissions monitoring shall encompass: — All CO2 emissions from fuel combustion directly or indirectly linked to the process. — Process emissions from carbonates in raw materials, if applicable, and flue gas cleaning. | None | None | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g.
rt uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Cement | Cement | 25239000 | Other hydraulic cements | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | None | Cement | For cement, direct emissions monitoring shall encompass: — All CO2 emissions from fuel combustion, where relevant for drying of materials. | Cement clinker; Calcined clay, if used in the process | Mass ratio of tonnes cement clinker consumed per produced tonne of cement (clinker to cement ratio expressed in per cent). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g.
rt uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Sintered Ore | 26011200 | Agglomerated iron ores and concentrates, other than roasted iron pyrites | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes all kinds of iron ore pellet production (for sale of pellets as well as for direct use in the same installation) and sinter production. To the extent covered by CN code 2601 12 00, also iron ores used as precursors for ferro-chromium (FeCr), ferro-manganese (FeMn) or ferro-nickel (FeNi) may be covered. | Sintered ore | For sintered ore, direct emissions monitoring shall encompass: — CO2 from process materials such as limestone and other carbonates or carbonatic ores; — CO2 from all fuels including coke, waste gases such as coke oven gas, blast furnace gas or converter gas; directly or indirectly linked to the production process, and materials used for flue gas cleaning.
rom all fuels including coke, waste gases such as coke oven gas, blast furnace gas or converter gas; directly or indirectly linked to the production process, and materials used for flue gas cleaning. | None | None | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Electricity | Electricity | 27160000 | Electrical energy | Yes | No | Quantity of goods imported expressed in megawatt hours | Country of origin | If actual emissions are reported: Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | For electricity, only direct emissions shall be monitored and reported. The emission factor for electricity shall be determined in accordance with Section D.2 of Annex III. | Electricity | For electricity, direct emissions monitoring shall encompass: — Any combustion emissions and process emissions from flue gas treatment.
d in accordance with Section D.2 of Annex III. | Electricity | For electricity, direct emissions monitoring shall encompass: — Any combustion emissions and process emissions from flue gas treatment. | None | Emission factor used for electricity, expressed as tonne CO2e per MWh, as well as method/data source used for calculation | Only direct emissions need to be reported. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Chemicals (hydrogen) | Hydrogen | 28041000 | Hydrogen | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Only the production of pure hydrogen or mixtures of hydrogen with nitrogen usable in ammonia production shall be considered.
geographical coordinates of the main emission source of the installation | Only the production of pure hydrogen or mixtures of hydrogen with nitrogen usable in ammonia production shall be considered. Not covered are the production of synthesis gas or of hydrogen within refineries or organic chemical installations, where hydrogen is exclusively used within those plants and not used for the production of goods listed in Annex I to Regulation (EU) 2023/956 | Steam reforming, Partial oxidation, Other fuel-based hydrogen production, Electrolysis of water, Electrolysis of water (other energy sources), Chlor-Alkali electrolysis, Production of chlorates, Other production routes | Please see implementing regulation (Annex II 3.6.2) for the requirements for the different production routes. | None | None | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Nitric acid | 28080000 | Nitric acid; sulphonitric acids | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Amounts of nitric acid produced shall be monitored and reported as 100 % nitric acid. | Nitric acid | For nitric acid, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to nitric acid production, and materials used for flue gas cleaning; — N2O emissions from all sources emitting N2O from the production process, including unabated and abated emissions. Any N2O emissions from the combustion of fuels are excluded from monitoring. | Ammonia (as 100 % ammonia) | Concentration (mass %). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024).
d, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Ammonia | 28141000 | Anhydrous ammonia | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Both hydrous and anhydrous ammonia shall be reported jointly as 100 % ammonia. Where CO2 from ammonia production is used as feedstock for the production of urea or other chemicals, point (b) of Section B.8.2 of Annex III shall apply. Where a deduction of CO2 is allowed according to that section and where it would lead to negative specific embedded direct emissions of ammonia, the specific embedded direct emissions of ammonia shall be zero. | Haber-Bosch process with steam reforming of natural gas or biogas, Haber-Bosch process with gasification of coal or other fuels, Other production routes | Haber-Bosch process with steam reforming of natural gas or biogas For that production route, direct emissions monitoring shall encompass: — All fuels directly or indirectly linked to ammonia production, and materials used for flue gas cleaning. — All fuels shall be monitored, irrespective of whether used as energetic or non-energetic input.
fuels directly or indirectly linked to ammonia production, and materials used for flue gas cleaning. — All fuels shall be monitored, irrespective of whether used as energetic or non-energetic input. — Where biogas is used, the provisions of Section B.3.3 of Annex III shall be applied. — Where hydrogen from other production routes is added to the process, it shall be treated as a precursor with its own embedded emissions. Haber-Bosch process with gasification of coal or other fuels. For that production route, direct emissions monitoring shall encompass: — All fuels directly or indirectly linked to ammonia production, and materials used for flue gas cleaning. — Each fuel input shall be monitored as one fuel stream, irrespective of whether it is used as energetic or non-energetic input. — Where hydrogen from other production routes is added to the process, it shall be treated as a precursor with its own embedded emissions. | Separately produced hydrogen, if used | Concentration, if hydrous solution. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Ammonia | 28142000 | Ammonia in aqueous solution | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Both hydrous and anhydrous ammonia shall be reported jointly as 100 % ammonia. Where CO2 from ammonia production is used as feedstock for the production of urea or other chemicals, point (b) of Section B.8.2 of Annex III shall apply. Where a deduction of CO2 is allowed according to that section and where it would lead to negative specific embedded direct emissions of ammonia, the specific embedded direct emissions of ammonia shall be zero. | Haber-Bosch process with steam reforming of natural gas or biogas, Haber-Bosch process with gasification of coal or other fuels, Other production routes | Haber-Bosch process with steam reforming of natural gas or biogas For that production route, direct emissions monitoring shall encompass: — All fuels directly or indirectly linked to ammonia production, and materials used for flue gas cleaning. — All fuels shall be monitored, irrespective of whether used as energetic or non-energetic input. — Where biogas is used, the provisions of Section B.3.3 of Annex III shall be applied.
gas cleaning. — All fuels shall be monitored, irrespective of whether used as energetic or non-energetic input. — Where biogas is used, the provisions of Section B.3.3 of Annex III shall be applied. — Where hydrogen from other production routes is added to the process, it shall be treated as a precursor with its own embedded emissions. Haber-Bosch process with gasification of coal or other fuels. For that production route, direct emissions monitoring shall encompass: — All fuels directly or indirectly linked to ammonia production, and materials used for flue gas cleaning. — Each fuel input shall be monitored as one fuel stream, irrespective of whether it is used as energetic or non-energetic input. — Where hydrogen from other production routes is added to the process, it shall be treated as a precursor with its own embedded emissions. | Separately produced hydrogen, if used | Concentration, if hydrous solution. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 28342100 | Nitrates of potassium | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Urea | 31021012 | In aqueous solution, containing at least 31,8 % but not exceeding 33,2 % by weight of urea | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Where the CO2 used in the production of urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction.
urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction. However, where ammonia produced without direct fossil CO2 emissions is used as a precursor, the used CO2 may be deducted from the direct emissions of the installation producing the CO2, provided that the delegated act adopted pursuant to Article 12(3b) of Directive 2003/87/EC defines urea production as a case where CO2 is permanently chemically bound so that it does not enter the atmosphere under normal use, including any normal activity taking place after the end of the life of the product. Where such deduction would lead to negative specific direct embedded emissions of urea, the specific direct embedded emissions of urea shall be zero. | Mixed fertilisers, Urea | For urea, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to urea production, and materials used for flue gas cleaning. — Where CO2 is received from another installation as process input, the CO2 received and not bound in urea shall be considered an emission, if not already counted as emission of the installation where the CO2 was produced, under an eligible monitoring, reporting and verification system. | Ammonia (as 100 % ammonia) | Purity (mass % urea contained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values.
ained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Urea | 31021015 | In aqueous solution, containing more than 33,2 % but not exceeding 55 % by weight of urea | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Where the CO2 used in the production of urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction.
urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction. However, where ammonia produced without direct fossil CO2 emissions is used as a precursor, the used CO2 may be deducted from the direct emissions of the installation producing the CO2, provided that the delegated act adopted pursuant to Article 12(3b) of Directive 2003/87/EC defines urea production as a case where CO2 is permanently chemically bound so that it does not enter the atmosphere under normal use, including any normal activity taking place after the end of the life of the product. Where such deduction would lead to negative specific direct embedded emissions of urea, the specific direct embedded emissions of urea shall be zero. | Mixed fertilisers, Urea | For urea, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to urea production, and materials used for flue gas cleaning. — Where CO2 is received from another installation as process input, the CO2 received and not bound in urea shall be considered an emission, if not already counted as emission of the installation where the CO2 was produced, under an eligible monitoring, reporting and verification system. | Ammonia (as 100 % ammonia) | Purity (mass % urea contained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values.
ained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Urea | 31021019 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Where the CO2 used in the production of urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction.
urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction. However, where ammonia produced without direct fossil CO2 emissions is used as a precursor, the used CO2 may be deducted from the direct emissions of the installation producing the CO2, provided that the delegated act adopted pursuant to Article 12(3b) of Directive 2003/87/EC defines urea production as a case where CO2 is permanently chemically bound so that it does not enter the atmosphere under normal use, including any normal activity taking place after the end of the life of the product. Where such deduction would lead to negative specific direct embedded emissions of urea, the specific direct embedded emissions of urea shall be zero. | Mixed fertilisers, Urea | For urea, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to urea production, and materials used for flue gas cleaning. — Where CO2 is received from another installation as process input, the CO2 received and not bound in urea shall be considered an emission, if not already counted as emission of the installation where the CO2 was produced, under an eligible monitoring, reporting and verification system. | Ammonia (as 100 % ammonia) | Purity (mass % urea contained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values.
ained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Urea | 31021090 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Where the CO2 used in the production of urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction.
urea stems from ammonia production, it is accounted for as subtraction in the embedded emissions of ammonia as precursor of urea, if the provisions of Section 3.7 of this Annex allow such deduction. However, where ammonia produced without direct fossil CO2 emissions is used as a precursor, the used CO2 may be deducted from the direct emissions of the installation producing the CO2, provided that the delegated act adopted pursuant to Article 12(3b) of Directive 2003/87/EC defines urea production as a case where CO2 is permanently chemically bound so that it does not enter the atmosphere under normal use, including any normal activity taking place after the end of the life of the product. Where such deduction would lead to negative specific direct embedded emissions of urea, the specific direct embedded emissions of urea shall be zero. | Mixed fertilisers, Urea | For urea, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to urea production, and materials used for flue gas cleaning. — Where CO2 is received from another installation as process input, the CO2 received and not bound in urea shall be considered an emission, if not already counted as emission of the installation where the CO2 was produced, under an eligible monitoring, reporting and verification system. | Ammonia (as 100 % ammonia) | Purity (mass % urea contained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values.
ained, % N contained). | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31022100 | Ammonium sulphate | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31022900 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31023010 | In aqueous solution | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31023090 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms.
Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31024010 | With a nitrogen content not exceeding 28 % by weight | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31024090 | With a nitrogen content exceeding 28 % by weight | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31025000 | Sodium nitrate | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31026000 | Double salts and mixtures of calcium nitrate and ammonium nitrate | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31028000 | Mixtures of urea and ammonium nitrate in aqueous or ammoniacal solution | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31029000 | Other, including mixtures not specified in the foregoing subheadings | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31051000 | Goods of this chapter in tablets or similar forms or in packages of a gross weight not exceeding 10 kg | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31052010 | With a nitrogen content exceeding 10 % by weight on the dry anhydrous product | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31052090 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31053000 | Diammonium hydrogenorthophosphate (diammonium phosphate) | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31054000 | Ammonium dihydrogenorthophosphate (monoammonium phosphate) and mixtures thereof with diammonium hydrogenorthophosphate (diammonium phosphate) | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values.
other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31055100 | Containing nitrates and phosphates | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31055900 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31059020 | With a nitrogen content exceeding 10 % by weight on the dry anhydrous product | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Fertilisers | Mixed fertilisers | 31059080 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see implementing regulation (Annex II 3.10.1). | Mixed fertilisers | For mixed fertilisers, direct emissions monitoring shall encompass: — CO2 from all fuels directly or indirectly linked to fertiliser production, such as fuels used in driers and for heating input materials, and materials used for flue gas cleaning | ammonia (as 100 % ammonia), if used in the process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process.
e process; nitric acid (as 100 % nitric acid), if used in the process; urea, if used in the process; mixed fertilisers (in particular salts containing ammonium or nitrate), if used in the process. | Information required anyway under Regulation (EU) 2019/1009: — content of N as ammonium (NH4 + ); — content of N as nitrate (NO3 – ); — content of N as urea; — content of N in other (organic) forms. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72011011 | Containing by weight 1 % or less of silicon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules).
This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
tic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g.
rt uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72011019 | Containing by weight more than 1 % of silicon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately.
rom the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning.
ovisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72011030 | Containing by weight not less than 0,1 % but less than 0,4 % of manganese | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately.
rom the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning.
ovisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72011090 | Containing by weight less than 0,1 % of manganese | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately.
rom the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning.
ovisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72012000 | Non-alloy pig iron containing by weight more than 0,5 % of phosphorus | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately.
rom the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning.
ovisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72015010 | Alloy pig iron containing by weight not less than 0,3 % but not more than 1 % of titanium and not less than 0,5 % but not more than 1 % of vanadium | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately.
rom the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning.
ovisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Pig iron | 72015090 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This aggregated goods category includes non-alloyed pig iron from blast furnaces as well as alloy-containing pig irons (e.g. spiegeleisen), irrespective of the physical form (e.g. ingots, granules). NPI (nickel pig iron) is included if the nickel content is lower than 10 %. In integrated steel plants, liquid pig iron (‘hot metal’) directly charged to the oxygen converter is the product which separates the production process for pig iron from the production process of crude steel. Where the installation does not sell or transfer pig iron to other installations, there is no need to monitor emissions from pig iron production separately. | Iron or steel products, Blast furnace route, Smelting reduction, Other production routes, Nickel Pig Iron production | Blast furnace route: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas.
nd reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, as well as from waste gases such as coke oven gas, blast furnace gas or converter gas. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Smelting reduction: For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as coke, coke dust, coal, fuel oils, plastic wastes, natural gas, wood wastes, charcoal, waste gases from the process or converter gas, etc. — Where biomass is used, the provisions of Section B.3.3 of Annex III shall be taken into account. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements.
processes, if used in the process; — FeMn, FeCr, FeNi if used in the process; — hydrogen if used in the process. | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeMn | 72021120 | With a granulometry not exceeding 5 mm and a manganese content by weight exceeding 65 % | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %.
odes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Mn and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024).
d, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeMn | 72021180 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions.
e nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Mn and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeMn | 72021900 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process.
es; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Mn and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeCr | 72024110 | Containing by weight more than 4 % but not more than 6 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %.
odes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Cr and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024).
d, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeCr | 72024190 | Containing by weight more than 6 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions.
e nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Cr and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeCr | 72024910 | Containing by weight not more than 0,05 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
sumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Cr and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeCr | 72024950 | Containing by weight more than 0,05 % but not more than 0,5 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %.
odes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Cr and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024).
d, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeCr | 72024990 | Containing by weight more than 0,5 % but not more than 4 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions.
e nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Cr and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | FeNi | 72026000 | Ferro-nickel | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | This process covers only the production of the alloys identified under CN codes 7202 1, 7202 4 and 7202 6. Other iron materials with significant alloy content such as spiegeleisen are not covered. NPI (nickel pig iron) is included if the nickel content is greater than 10 %. Where waste gases or other flue gases are emitted without abatement, CO contained in the waste gas shall be considered as the molar equivalent of CO2 emissions. | Iron or steel products, Nickel Pig Iron production, Ferro-nickel (FeNi), Ferro-chromium (FeCr), Ferro-manganese (FeMn) | For FeMn, FeCr and FeNi, direct emissions monitoring shall encompass: — CO2 emissions caused by fuel inputs, irrespective of whether they are used for energetic or non-energetic use; — CO2 emissions from process inputs such as limestone and from flue gas cleaning; — CO2 emissions from the consumption of electrodes or electrode pastes; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process.
es; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | Sintered ore, if used in the process. | Mass % of Ni and carbon. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | DRI | 72031000 | Ferrous products obtained by direct reduction of iron ore | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | There is only one production route defined, although different technologies may use different qualities of ores, which may require pelletisation or sintering, and different reducing agents (natural gas, diverse fossil fuels or biomass, hydrogen). Therefore, precursors sintered ore or hydrogen may be relevant.
, which may require pelletisation or sintering, and different reducing agents (natural gas, diverse fossil fuels or biomass, hydrogen). Therefore, precursors sintered ore or hydrogen may be relevant. As products, iron sponge, hot briquetted iron (HBI) or other forms of direct reduced iron may be relevant, including DRI which is immediately fed to electric arc furnaces or other downstream processes. Where the installation does not sell or transfer DRI to other installations, there is no need to monitor emissions from DRI production separately. | Iron or steel products, Production of Direct reduced Iron (using hydrogen), DRI (Direct reduced iron) | For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as natural gas, fuel oils, waste gases from the process or converter gas, etc.; — Where biogas or other forms of biomass are used, the provisions of Section B.3.3 of Annex III shall be taken into account; — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore, if used in the process; — hydrogen, if used in the process; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements.
om other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | DRI | 72039000 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | There is only one production route defined, although different technologies may use different qualities of ores, which may require pelletisation or sintering, and different reducing agents (natural gas, diverse fossil fuels or biomass, hydrogen). Therefore, precursors sintered ore or hydrogen may be relevant. As products, iron sponge, hot briquetted iron (HBI) or other forms of direct reduced iron may be relevant, including DRI which is immediately fed to electric arc furnaces or other downstream processes.
products, iron sponge, hot briquetted iron (HBI) or other forms of direct reduced iron may be relevant, including DRI which is immediately fed to electric arc furnaces or other downstream processes. Where the installation does not sell or transfer DRI to other installations, there is no need to monitor emissions from DRI production separately. | Iron or steel products, Production of Direct reduced Iron (using hydrogen), DRI (Direct reduced iron) | For this production route, direct emissions monitoring shall encompass: — CO2 from fuels and reducing agents such as natural gas, fuel oils, waste gases from the process or converter gas, etc.; — Where biogas or other forms of biomass are used, the provisions of Section B.3.3 of Annex III shall be taken into account; — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning; — Carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — sintered ore, if used in the process; — hydrogen, if used in the process; — pig iron or DRI from other installations or production processes, if used in the process; — FeMn, FeCr, FeNi if used in the process | The main reducing agent used. Mass % of Mn, Cr, Ni, total of other alloy elements. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72051000 | Granules | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process.
n or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72052100 | Of alloy steel | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72052900 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process.
n or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72061000 | Ingots | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071190 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071210 | Rolled or obtained by continuous casting | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071290 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071912 | Rolled or obtained by continuous casting | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071919 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72071980 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc.
that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known.
production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072011 | Of free-cutting steel | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072015 | 0,25 % or more but less than 0,6 % of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc.
tc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap.
duced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072017 | 0,6 % or more of carbon | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072019 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072032 | Rolled or obtained by continuous casting | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072039 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072052 | Rolled or obtained by continuous casting | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl.
lementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g.
lectrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072059 | Forged | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III.
process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed.
watt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Crude steel | 72072080 | Other | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | The system boundaries shall cover all necessary activities and units for obtaining crude steel. Please see Implementing Regulation for further explanations (Annex II 3.15.1). | Iron or steel products, Basic oxigen steel making, Basic oxigen steel making (incl. Blast furnace), Basic oxigen steel making (incl. Melting reduction), Electric arc furnace, Electric arc furnace (alloy steels), Electric arc furnace (carbon steel, from direct reduced iron), Electric arc furnace (general) | Basic oxygen steelmaking: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc.
that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, waste gases such as blast furnace gas, coke oven gas or converter gas, etc. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process in scrap, alloys, graphite, etc. and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. Electric arc furnace: For that production route, direct emissions monitoring shall encompass: — CO2 from fuels such as coal, natural gas, fuel oils, as well as from waste gases such as blast furnace gas, coke oven gas or converter gas. — CO2 from the consumption of electrodes and electrode pastes. — CO2 from process materials such as limestone, magnesite, and other carbonates, carbonatic ores; materials for flue gas cleaning. — Carbon entering the process, e.g. in the form of scrap, alloys and graphite, and carbon remaining in the product or in slags or wastes is taken into account by using a mass balance method in accordance with Section B.3.2 of Annex III. | — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi if used in the process; — crude steel from other installations or production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known.
production processes if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent of the precursor, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Tonnes scrap used for producing 1 t crude steel. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72081000 | In coils, not further worked than hot-rolled, with patterns in relief | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72082500 | Of a thickness of 4,75 mm or more | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process.
n or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72082600 | Of a thickness of 3 mm or more but less than 4,75 mm | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements.
ber of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72082700 | Of a thickness of less than 3 mm | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72083600 | Of a thickness exceeding 10 mm | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process.
n or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024.
ystems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72083700 | Of a thickness of 4,75 mm or more but not exceeding 10 mm | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements.
ber of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by the Commission (until July 2024). For imports until 30 June 2024, CBAM reports are due 31 July 2024. | Yes | | Iron and steel | Iron or steel products | 72083800 | Of a thickness of 3 mm or more but less than 4,75 mm | Yes | Yes | Quantity of goods imported expressed in tonnes | Country of origin | Installation where the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1).
e the goods were produced, including UN/LOCODE, company name, address, geographical coordinates of the main emission source of the installation | Please see Implementing Regulation (Annex II 3.16.1). | Iron or steel products | For iron or steel products, direct emissions monitoring shall encompass: — All CO2 emissions from combustion of fuels and process emissions from flue gas treatment, related to production steps applied at the installation, including, but not limited to: re-heating, re-melting, casting, hot rolling, cold rolling, forging, pickling, annealing, plating, coating, galvanising, wire drawing, cutting, welding and finishing of iron or steel products. | — crude steel, if used in the process; — pig iron, DRI, if used in the process; — FeMn, FeCr, FeNi, if used in the process; — iron or steel products, if used in the process. | Identification number of specific steel mill where a particular batch of raw materials was produced. The main reducing agent used in precursor production, if known. Mass % of Mn, Cr, Ni, total of other alloy elements. Mass % of materials contained which are not iron or steel if their mass is more than 1 % to 5 % of the total goods’ mass. Tonnes scrap used for producing 1 t of the product. % of scrap that is pre-consumer scrap. | a) electricity consumption, in megawatt hours, of the production process per tonne of goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions.
goods produced. b) specify whether report uses actual emissions data or default values. c) corresponding emissions factor of electricity consumed. d) amount of specific embedded indirect emissions. | Information on the methods used, e.g. CBAM methodology, other eligible monitoring and reporting systems (until end of 2024), other methods including default values made available and published by t
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