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Supply and demand of some critical metals and present status of their recycling in WEEE

机译:WEEE中一些关键金属的供需状况及其回收现状

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摘要

New development and technological innovations make electrical and electronic equipment (EEE) more functional by using an increasing number of metals, particularly the critical metals (e.g. rare and precious metals) with specialized properties. As millions of people in emerging economies adopt a modern lifestyle, the demand for critical metals is soaring. However, the increasing demand causes the crisis of their supply because of their simple deficiency in the Earth's crust or geopolitical constraints which might create political issues for their supply. This paper focuses on the sustainable supply of typical critical metals (indium, rare earth elements (REEs), lithium, cobalt and precious metals) through recycling waste electrical and electronic equipment (WEEE). To illuminate this issue, the production, consumption, expected future demand, current recycling situation of critical metals, WEEE management and their recycling have been reviewed. We find that the demand of indium, REEs, lithium and cobalt in EEE will continuously increasing, while precious metals are decreasing because of new substitutions with less or even without precious metals. Although the generation of WEEE in 2014 was about 41.9 million tons (Mt), just about 15% (6.5 Mt) was treated environmentally. The inefficient collection of WEEE is the main obstacle to relieving the supply risk of critical metals. Furthermore, due to the widespread use in low concentrations, such as indium, their recycling is not just technological problem, but economic feasibility is. Finally, relevant recommendations are point out to address these issues.
机译:新的发展和技术创新通过使用越来越多的金属,尤其是具有特殊性能的关键金属(例如稀有和贵金属),使电气和电子设备(EEE)的功能更加强大。随着新兴经济体中数百万人采用现代生活方式,对关键金属的需求猛增。然而,由于地壳的简单缺乏或地缘政治的限制,需求的增加导致供应的危机,这可能为其供应带来政治问题。本文致力于通过回收废弃的电气和电子设备(WEEE)来可持续供应典型的关键金属(铟,稀土元素(REE),锂,钴和贵金属)。为了阐明这一问题,已经对生产,消费,预期的未来需求,关键金属的当前回收状况,WEEE管理及其回收进行了审查。我们发现,EEE中对铟,稀土元素,锂和钴的需求将持续增长,而贵金属则由于使用更少甚至没有贵金属的新替代物而减少。尽管2014年的WEEE产生量约为4190万吨(Mt),但仅约15%(6.5 Mt)受到了环境处理。 WEEE收集效率低下是减轻关键金属供应风险的主要障碍。此外,由于铟等低浓度物质的广泛使用,它们的回收不仅是技术问题,而且在经济上也是可行的。最后,指出了解决这些问题的相关建议。

著录项

  • 来源
    《Waste Management》 |2017年第7期|113-127|共15页
  • 作者单位

    Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, PR China;

    Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, PR China;

    Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, PR China;

    Department of Engineering and Technical Services, District of Columbia Water and Sewer Authority, Washington, DC 20032, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    WEEE; Critical metals; Supply and demand; Waste management; Recycling;

    机译:WEEE;关键金属;供需;废物管理;回收利用;

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