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7 References

Andrews & Whitehead. (2019). Data Centres in 2030: comparative case studies that illustrate the potential of Design for the Circular Economy as an enabler of Sustainability.
Asset Guardian Solutions Limited. (2017). Obsolescence Management of Software Components. Retrieved from Asset Guardian: https://www.assetguardian.com/obsolescence-management-of-software-components/
CEN & CENELEC. (2023). Work programme 2023 - European Committee for Standardization, European Committee for Electrotechnical Standardization. Retrieved from https://www.cencenelec.eu/media/CEN-CENELEC/News/Publications/2023/workprog2023.pdf
CEWASTE. (2021). A contribution to future Critical Raw Materials Recycling Critical Raw Materials Recyclin. Switzerland. Retrieved from https://cewaste.eu/wp-content/uploads/2021/04/CEWASTE-Final-Public-Raport.pdf
Charles et al. (2020). Towards Increased Recovery of Critical Raw Materials from WEEE – evaluation of CRMs at a component level and pre-processing methods for interface optimisation with recovery processes.
CIRPASS. (n.d.). Retrieved from https://cirpassproject.eu/
Copani et al. (2019). Integrated Technological Solutions for Zero Waste Recycling of Printed Circuit Boards (PCBs).
CRM Alliance. (n.d.). Critical Raw Materials. Retrieved from crmalliance.eu: https://www.crmalliance.eu/critical-raw-materials
Daigle, B. (2021). Data Centers Around the World: A Quick Look. United States International Trade Commission. Retrieved from https://www.usitc.gov/publications/332/executive_briefings/ebot_data_centers_around_the_world.pdf
DIGITALEUROPE. (2016). Best Practices in Recycled Plastics.
Eilu, P., Bjerkgård, T., Franzson, H., Gautneb, H., Häkkinen, T., Jonsson, E., . . . T., T. (2021). The Nordic Supply Potential of Critical Metals and Minerals for a Green Energy Transition. Nordic Innovation.
Equinix. (2023). Oxford Quantum Circuits Installing Quantum Computer in Equinix IBX® Data Center With Plans To Open Access to Businesses Globally. Retrieved from equinix.com: https://www.equinix.com/newsroom/press-releases/2023/03/oxford-quantum-circuits-installing-quantum-computer-in-equinix-ibx-data-center-with-plans-to-open-access-to-businesses-globally
ETSI. (2022). Environmental Engineering (EE); Applicability of EN 45552 to EN 45559 methods for assessment of material efficiency aspects of ICT network infrastructure goods in the context of circular economy.
EU Monitor. (2023). Plastic waste and recycling in the EU: facts and figures.
European Commission. (2015a). First circular economy action plan.
European Commission. (2015b). Ecodesign Preparatory Study on Enterprise Servers and Data Equipment.
European Commission. (2017a). COMMUNICATION FROM THE COMMISSION TO THE EUROPEAN PARLIAMENT, THE COUNCIL, THE EUROPEAN ECONOMIC AND SOCIAL COMMITTEE AND THE COMMITTEE OF THE REGIONS on the 2017 list of Critical Raw Materials for the EU . Brussels: The Publications Office of the European Union.
European Commission. (2018a). COMMUNICATION FROM THE COMMISSION TO THE EUROPEAN PARLIAMENT, THE COUNCIL, THE EUROPEAN ECONOMIC AND SOCIAL COMMITTEE AND THE COMMITTEE OF THE REGIONS *A European Strategy for Plastics in a Circular Economy'.
European Commission. (2019). COMMISSION REGULATION (EU) 2019/424; laying down ecodesign requirements for servers and data storage products pursuant to Directive 2009/125/EC of the European Parliament and of the Council and amending Commission Regulation (EU) No 617/2013. European Commission. Retrieved from https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A32019R0424
European Commission. (2020a). Study on the EU's list of critical raw materials (2020). Luxembourg: Publications Office of the European Commission. Retrieved from https://op.europa.eu/en/publication-detail/-/publication/c0d5292a-ee54-11ea-991b-01aa75ed71a1/language-en
European Commission. (2020b). A new Circular Economy Action Plan For a cleaner and more competitive Europe.
European Commission. (2020c). Development of the EU Green Public Procurement (GPP) Criteria for Data Centres, Server Rooms and Cloud Services. Luxembourg: Publications Office of the European Union.
European Commission. (2022a). Proposal for a REGULATION OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL, establishing a framework for setting ecodesign requirements for sustainable products and repealing Directive 2009/125/EC. Brussels: European Commission. Retrieved from https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX:52022PC0142
European Commission. (2022b). COMMUNICATION FROM THE COMMISSION TO THE EUROPEAN PARLIAMENT, THE COUNCIL, THE EUROPEAN ECONOMIC AND SOCIAL COMMITTEE AND THE COMMITTEE OF THE REGIONS; A new Circular Economy Action Plan; For a cleaner and more competitive Europe. Brussels: European Commission. Retrieved from https://eur-lex.europa.eu/legal-content/EN/TXT/?qid=1583933814386&uri=COM:2020:98:FIN
European Commission. (2022c). COMMUNICATION FROM THE COMMISSION Ecodesign and Energy Labelling Working Plan 2022-2024. Brussels: European Commission.
European Commission. (2022d). Proposal for Ecodesign for Sustainable Products Regulation.
European Commission. (2023a). Study on the critical raw materials for the EU 2023. Publications Office of the European Union. Retrieved from https://op.europa.eu/en/publication-detail/-/publication/57318397-fdd4-11ed-a05c-01aa75ed71a1
European Commission. (2023b). Proposal for a REGULATION OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL establishing a framework for ensuring a secure and sustainable supply of critical raw materials and amending Regulations (EU) 168/2013, (EU) 2018/858, 2018/1724 and (EU) 2019/1020. Brussels: European Commission. Retrieved from https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52023PC0160
European Commission. (2023c). Critical Raw Materials: ensuring secure and sustainable supply chains for EU's green and digital future. Retrieved from ec.europa.eu: https://ec.europa.eu/commission/presscorner/detail/en/ip_23_1661
European Commission. (2023d). Proposal for a regulation of the European Parliament and of the Council establishing a framework for ensuring a secure and sustainable supply of critical raw materials and amending Regulations (EU) 168/2013, (EU) 2018/858, 2018/1724 and (EU) 2019/102. Retrieved from single-market-economy.ec.europa.eu: https://single-market-economy.ec.europa.eu/publications/european-critical-raw-materials-act_en
European Commission. (2023e). COMMISSION REGULATION (EU) of 16.6.2023 laying down ecodesign requirements for smartphones, mobile phones other than smartphones, cordless phones and slate tablets pursuant to Directive 2009/125/EC of the European Parliament and of the Council and amendin. Brussels.
European Parliament. (2009). DIRECTIVE 2009/125/EC OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL of 21 October 2009 establishing a framework for the setting of ecodesign requirements for energy-related products .
European Parliament. (2020). Commission Delegated Regulation (EU) 2020/2174 of 19 October 2020.
European Parliament. (2023a). Plastic waste and recycling in the EU: facts and figures.
European Parliament. (2023b). STRATEGY on PLASTICS in the CIRCULAR ECONOMY. Legislative Train Schedule.
European Parliament. (2023C). Regulation (EU) 2023/1542 of the European Parliament and of the Council of 12 July 2023 concerning batteries and waste batteries, amending Directive 2008/98/EC and Regulation (EU) 2019/1020 and repealing Directive 2006/66/EC. Official Journal of the European Union. Retrieved from https://eur-lex.europa.eu/eli/reg/2023/1542/oj
Gloria, F. (2021). Material Criticality for Future Telecommunication Technologies: Scenario Development and Supply Chain Resilience Strategies. Delft University of Technology; Universiteit Leiden, 1-152.
Hagelüken. (2006). Recycling of Electronic Scrap at Umicore. Precious Metals Refining.
IBM. (2022). President Biden visits IBM’s quantum data center. Retrieved from research.ibm.com: https://research.ibm.com/blog/quantum-computation-center-update
IBM. (2023). IBM to Build its First European Quantum Data Center to Serve Expanding Ecosystem. Retrieved from newsroom.ibm.com: https://newsroom.ibm.com/2023-06-06-IBM-to-Build-its-First-European-Quantum-Data-Center-to-Serve-Expanding-Ecosystem
ICF. (2023). Study for the review of Commission Regulation 2019/424 (Ecodesign of servers and data storage products): Task 4 Technologies – DRAFT v2. ICF.
ICF. (n.d.). Background. Retrieved from eco-servers-review.eu: https://eco-servers-review.eu/about/
IEEE. (2022). Optimizing Server Refresh Cycles: The Case for Circular Economy With an Aging Moore’s Law. IEEE TRANSACTIONS ON SUSTAINABLE COMPUTING.
ISO/IEC. (2018). ISO/IEC 21964-1:2018. Information technology — Destruction of data carriers — Part 1: Principles and definitions.
ITU. (2012). Procedure for recycling rare metals in. ITU-T.
ITU. (2018a). Extended producer responsibility – Guidelines for sustainable e-waste management. ITU-T.
Jonsson, E., Törmänen, T., Keiding, J. K., Bjerkgård, T., Eilu, P., Pokki, J., . . . Stendal, H. (2023). Critical metals and minerals in the Nordic countries of Europe: diversity of mineralization and green energy potential. In K. H. M. Smelror, The Green Stone Age (p. 58). London: Geological Society of London.
JRC. (2015). Environmental Footprint and Material Efficiency Support for product policy.
JRC. (2020). European Commission, Critical raw materials for strategic technologies and sectors in the EU - a foresight study.
JRC. (2020b). Development of the EU Green Public Procurement (GPP) Criteria for Data Centres, Server Rooms and Cloud Services.
JRC. (2023a). Supply chain analysis and material demand forecast in strategic technologies and sectors in the EU – A foresight study. Luxembourg: Publications Office of the European Union. doi:10.2760/386650
JRC. (2023b). ICT Task Force Study: Final Report.
Kerwin et al. . (2022). The significance of product design in the circular economy: A sustainable approach to the design of data centre equipment as demonstrated via the CEDaCI design case study.
Koppelaar, R., Pamidi, S., Hajósi, E., Herreras, L., Leroy, P., Jung, H.-Y., . . . Fontana, A. (2023). A Digital Product Passport for Critical Raw Materials Reuse. Criticality Versus Geological Scarcity: Different Concepts, Which May Need Tuning, 1-21.
Korea Zinc. (2021). Sustainability report 2021.
NIST. (2014). NIST Special Publication 800-88 Revision 1 - Guidelines for Media Sanitization.
OECD. (2016). OECD Due Diligence Guidance for Responsible Supply Chains of Minerals from Conflict-Affected and High-Risk Areas.
Plastics Europe. (2022). Plastics - the Facts 2022.
PolyCE. (2020). Post-Consumer High-tech Recycled Polymers for a Circular .
Right to repair . (2021). Position on part pairing.
S. Glaser, A. D. (2023). Design aspects and environmental impacts of Wide Band gap based semiconductor technology in chargers for electronic devices. PECTA.
Schischke, K., Berwald, A., Dimitrova, G., Rückschloss, J., Nissen, N. F., & Schneider-Ramelow, M. (2022). Durability, reparability and recyclability: Applying material efficiency standards EN 4555x to mobile phones and tablet computers. Procedia CIRP, p. 619-624.
Statista. (2023). Plastic waste in Europe - statistics & facts.
VHK and Viegand Maagøe. (2020). ICT Impact study - Final Report. European Commission .
Viegand Maagøe. (2023). Reporting requirements on the energy performance and sustainability of data centres for the Energy Efficiency Directive. Task A report: Options for a reporting scheme for data centres.
Viegand Maagøe et al. (2021). Preparatory study for the Ecodesign and Energy Labelling Working Plan 2020-2024. Viegand Maagøe A/S, Oeko-Institut e.V., Van Holsteijn en Kemna BV for the European Commission, DG GROW.
WeLOOP. (2020). A SITUATIONAL ANALYSIS OF A CIRCULAR ECONOMY IN THE DATA CENTRE INDUSTRY.
Zapp, P., Schreiber, A., Marx, J., & Kuckshinrichs, W. (2022). Environmental impacts of rare earth production. MRS Bulletin. doi:doi:10.1557/s43577-022-00286-6