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Challenges of recycling multiple scarce metals: The case of Swedish ELV and WEEE recycling

机译:回收多个稀缺金属的挑战:瑞典矮子和WEEE回收的情况

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摘要

Cars and electronic products are characterised by high metal complexity. Meanwhile, recycling industries are not fully aligned with this complexity, leading to losses of unique scarce metal resources. By utilising the technological innovation system framework we identify, and discuss implications of, factors that impact on recycling of some precious (gold, palladium, silver) and minor metals (gallium, tantalum) in printed circuit boards (PCBs) present in Swedish end-of-life cars (ELVs) and waste electrical and electronic equipment (WEEE). We conclude that while precious metals from WEEE PCBs are currently recycled, recycling precious metals from ELV PCBs will likely remain a challenge in the near-term due to recycling being blocked by the material composition of ELV waste, design of waste legislation, and by accumulated capabilities and business models in current recycling industries. However, some of these blocking factors are open to direct influence from national policymakers or industry actors and may thus be alleviated more easily. In contrast, recycling minor metals from ELV or WEEE PCBs will likely remain challenging also in the long-term due to a larger set of blocking factors. Alleviating these may require a substantial portfolio of metal-specific policies at national and supra national levels supporting the build-up of entirely new recycling value chains.
机译:汽车和电子产品的特点是高金属复杂性。同时,回收行业并未完全与这种复杂性保持一致,导致独特的稀缺金属资源损失。通过利用我们识别的技术创新系统框架,并讨论对瑞典语结束时印刷电路板(PCB)中的一些珍贵(金,钯,银)和次要金属(镓,钽)的影响的影响 - 生活汽车(ELV)和废物电气和电子设备(WEEE)。我们得出结论,虽然来自WEEE PCB的贵金属目前被回收,但由于elv废物的材料组成,废物立法的材料组成和累积,从elv pcbs的贵金属回收来自elv PCB的贵金属可能仍然是近期挑战,并且通过累积的物质组成和累积当前回收行业的能力和商业模式。但是,这些阻塞因素中的一些是开放的,以直接影响国家政策制定者或行业行为者,因此可以更容易地缓解。相比之下,由于较大的阻塞因子,来自ELV或WEEE PCB的再循环次要金属也可能在长期内持续具有挑战性。减轻这些可能需要在国家和超国家一级的国家和超级国家一级的大量金属特定政策组合,支持完全新的回收价值链的积累。

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