Axelsson, K., Gong, J., Dugast, C., Lambe, F., Maquet, P., & Suljada, T. (2024). Consumption-based emissions: A new frontier for EU climate policy. Stockholm Environment Institute. https://doi.org/10.51414/sei2024.025 Brown, N., Croft, S., Dawkins, E., Finnveden, G., Green, J., Persson, M., Roth, S., West, C., & Wood, R. (2022). New methods and environmental indicators supporting policies for sustainable consumption in Sweden: Final report – PRINCE phase 2. Swedish Environmental Protecion Agency (Naturvårdsverket).
Cammeo, J., Ferrari, A., Borghesi, S., & Dokken, T. (2025). Understanding and assessing CBAM: vulnerability and impacts in the EU. SPES, SPES Project - Sustainability Perfomances, Evidence and Scenarios., 7(2).
Daka. (n.d). Øgro—Daka Danmark [Company website]. Effektiv Og Naturlig Gødning Til Økologisk Og Konventionel Brug. https://www.oegro.dk Dechezleprêtre, A., Haramboure, A., Kögel, C., Lalanne, G., & Yamano, N. (2025). Carbon Border Adjustments: The potential effects of the EU CBAM along the supply chain (OECD Science, Technology and Industry Working Papers) [OECD Science, Technology and Industry Working Papers]. https://doi.org/10.1787/e8c3d060-en Dechezleprêtre, mboure, A., Kögel, C., Lalanne, G., & Yamano, N. (2025). Carbon Border Adjustments: The potential effects of the EU CBAM along the supply chain (OECD Science, Technology and Industry Working Papers) [OECD Science, Technology and Industry Working Papers]. https://doi.org/10.1787/e8c3d060-en Energistyrelsen. (2025a). Danmarks globale klimapåvirkning. Energistyrelsen.
Energistyrelsen. (2025b). Metode for emnerne klimaaftrykket fra forbrug, import og eksport i Danmark Globale Klimapåvirkning.
EsadeEcPol. (2022). The impact of the carbon border adjustment on industrial competitiveness.
European Commission (n.d.b) Carbon Border Adjustment Mechanism (CBAM) - carbon price paid in a third
European Commission. Joint Research Centre. (2020). Raw materials demand for wind and solar PV technologies in the transition towards a decarbonised energy system. Publications Office. https://data.europa.eu/doi/10.2760/160859 European Parliament and Council of the European Union. (2023). Regulation (EU) 2023/956 of 10 May
Farjana, S. H., Huda, N., & Mahmud, M. A. P. (2019). Impacts of aluminum production: A cradle to gate investigation using life-cycle assessment. Science of The Total Environment, 663, 958–970. https://doi.org/10.1016/j.scitotenv.2019.01.400 Frisk, H. (2026). Personal communication. Svenskt Aluminium. 15 January.
Hasanbeigi, A., & Springer, C. (2025). Aluminium Climate Impact 2025. An international Benchmarking of Energy and CO2 Intensities. Global Effiency Intelligence.
Jacob Jensen & Ida Auken. (2024). Ministersvar: Hvor er den kunstgødning, danske landmænd benytter i deres produktion, produceret, og er kunstgødningen generelt produceret med fossile brændsler eller vedvarende energi? [Letter]. https://www.altinget.dk/forsyning/ministersvar/112478 Kittel, L., & Fahl, U. (2025). Carbon Leakage Protection—Model-Based Comparison of the Macroeconomic
Kuusi, T., Björklund, M., Kaitila, V., Kokko, K., Lehmus, M., Mehling, M., Oikarinen, T., Pohjola, J., Soimakallio, S., & Wang, M. (2020). Carbon Border Adjustment Mechanisms and Their Economic Impact on Finland and the EU.
Mendoza, J. F., Reiter, O., & Stehrer, R. (2024). Impacts of the EU carbon border adjustment mechanism.
Miremadi, I., Saboohi, Y., & Arasti, M. (2019). The influence of public R&D and knowledge spillovers on the development of renewable energy sources: The case of the Nordic countries. Technological Forecasting and Social Change, 146, 450–463. https://doi.org/10.1016/j.techfore.2019.04.020 Morfeldt, J., Larsson, J., Andersson, D., Johansson, D. J. A., Rootzén, J., Hult, C., & Karlsson, I. (2023). Emission pathways and mitigation options for achieving consumption-based climate targets in Sweden. Communications Earth & Environment, 4(1), 342. https://doi.org/10.1038/s43247-023-01012-z Naturvårdsverket. (2020). Analys av flera aspekter rörande en eventuell europeisk gränsjusteringsmekanism för klimat.
Nørgaard, S. D. (2025, June 6). Direktør for kæmpe stålværk: Derfor lukker vi. BØRSEN.
OECD. (2025a). Carbon Border Adjustments: The potential effects of the EU CBAM along the supply chain (OECD Science, Technology and Industry Working Papers) [OECD Science, Technology and Industry Working Papers]. https://doi.org/10.1787/e8c3d060-en Osei-Owusu, A. K., Towa, E., & Thomsen, M. (2022). Exploring the pathways towards the mitigation of the environmental impacts of food consumption. Science of The Total Environment, 806, 150528. https://doi.org/10.1016/j.scitotenv.2021.150528 Palm, V., Wood, R., Berglund, M., Dawkins, E., Finnveden, G., Schmidt, S., & Steinbach, N. (2019). Environmental pressures from Swedish consumption – A hybrid multi-regional input-output approach. Journal of Cleaner Production, 228, 634–644. https://doi.org/10.1016/j.jclepro.2019.04.181 Power2Earth. (n.d.). Power2Earth in talks about the project, status and way forward. Retrieved 15 April 2025
Song, Y., Johnson, D., Peng, R., Hensley, D. K., Bonnesen, P. V., Liang, L., Huang, J., Yang, F., Zhang, F., Qiao, R., Baddorf, A. P., Tschaplinski, T. J., Engle, N. L., Hatzell, M. C., Wu, Z., Cullen, D. A., Meyer, H. M., Sumpter, B. G., & Rondinone, A. J. (2018). A physical catalyst for the electrolysis of nitrogen to ammonia. Science Advances, 4(4), e1700336. https://doi.org/10.1126/sciadv.1700336 SPES. (2025). Understanding and assessing CBAM: vulnerability and impacts in the EU.
Springer, C., & Hasanbeigi, A. (2019). How Clean is the U.S. Steel Industry? An International Benchmarking of Energy and CO2 Intensities. Global Effiency Intelligence.
Stockholm Environment Institute. (2022). Swedish policy positions and perspectives on CBAM.
Tillväxtanalys. (2022). Förutsättningar för en alternativ försörjning av cement i Sverige.
Tukker, A., De Koning, A., Owen, A., Lutter, S., Bruckner, M., Giljum, S., Stadler, K., Wood, R., & Hoekstra, R. (2018a). Towards Robust, Authoritative Assessments of Environmental Impacts Embodied in Trade: Current State and Recommendations. Journal of Industrial Ecology, 22(3), 585–598. https://doi.org/10.1111/jiec.12716 Tukker, A., De Koning, A., Owen, A., Lutter, S., Bruckner, M., Giljum, S., Stadler, K., Wood, R., & Hoekstra, R. (2018b). Towards Robust, Authoritative Assessments of Environmental Impacts Embodied in Trade: Current State and Recommendations. Journal of Industrial Ecology, 22(3), 585–598. https://doi.org/10.1111/jiec.12716 Wiebe, K. S., Gandy, S., & Lutz, C. (2016). Policies and Consumption-Based Carbon Emissions from a Top-Down and a Bottom-Up Perspective. Low Carbon Economy, 07(01), 21–35. https://doi.org/10.4236/lce.2016.71003 Wildgrube, T., Holovko, I., & Heckmann, L. (2024). Third-country carbon pricing under the EU CBAM. Approaches for and challenges of recognising domestic payments. Climate Change, 2025(15), 37.
Wood, R., Moran, D., Stadler, K., Ivanova, D., Steen‐Olsen, K., Tisserant, A., & Hertwich, E. G. (2018). Prioritizing Consumption‐Based Carbon Policy Based on the Evaluation of Mitigation Potential Using Input‐Output Methods. Journal of Industrial Ecology, 22(3), 540–552. https://doi.org/10.1111/jiec.12702 Zhong, J., & Pei, J. (2022). Beggar thy neighbor? On the competitiveness and welfare impacts of the EU’s proposed carbon border adjustment mechanism. Energy Policy, 162, 112802. https://doi.org/10.1016/j.enpol.2022.112802 Zore, L. (2024). Decarbonisation Options for the Aluminium Industry (Publication EUR 31925 EN; pp. 25–26). JRC.