van Gaalen Joost M, Chris Slootweg J
Van 't Hoff Institute for Molecular Sciences, University of Amsterdam, PO Box 94157, 1090 GD, Amsterdam, The Netherlands.
ChemSusChem. 2025 Jan 14;18(2):e202401170. doi: 10.1002/cssc.202401170. Epub 2024 Oct 22.
This perspective addresses the key challenge of advancing the use of Critical Raw Materials (CRMs) and proposes a transition towards circular raw material management. In the context of our current economy, the unsustainable consumption, environmental degradation, geopolitical risks, and economic vulnerabilities associated with CRMs highlight the limitations in ensuring long-term CRM availability, emphasizing the environmental, social, and economic implications. In response, this perspective underlines a multifaceted technological approach to mitigate CRM criticality, focusing on reducing CRM use, substituting CRMs with less critical materials, and enhancing recovery and recycling processes, with Design for Circularity as the most impactful solution. The latter advocates for a paradigm shift in product design and material utilization, emphasizing principles like modular design, product life extension, and the transition from product ownership to service models. Such a holistic approach is not only crucial for sustainable CRM management, but is also key to fostering a resilient and low-carbon economy.
这一观点阐述了推进关键原材料(CRMs)使用所面临的关键挑战,并提出了向循环原材料管理的转变。在当前经济背景下,与关键原材料相关的不可持续消费、环境退化、地缘政治风险和经济脆弱性凸显了确保关键原材料长期供应的局限性,强调了其环境、社会和经济影响。对此,该观点强调了一种多方面的技术方法来减轻关键原材料的关键性,重点是减少关键原材料的使用、用关键性较低的材料替代关键原材料,以及加强回收和再循环过程,其中循环性设计是最具影响力 的解决方案。后者主张在产品设计和材料利用方面进行范式转变,强调模块化设计、产品寿命延长以及从产品所有权向服务模式转变等原则。这种整体方法不仅对可持续的关键原材料管理至关重要,也是培育有韧性的低碳经济的关键。