电子垃圾回收的全球视角

Kang Liu , Quanyin Tan , Jiadong Yu , Mengmeng Wang
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引用次数: 30

摘要

电子垃圾是相对快速增长的固体废物流之一,年增长率为3%-5%。尽管制定了国际政策以更好地限制危险废物的全球越境转移,但非法贸易和“非正式”回收的存在加剧了电子废物的全球回收。目前,许多低收入地区的居民仍在非法、不科学地处理电子垃圾以从中获利。产生的有毒有害物质通过地球化学循环影响全球生态环境。在这篇综述中,我们系统地概述了全球电子垃圾回收的现状。电子垃圾被置于一个框架中,按产品类型、数量、成分、环境健康风险和全球影响进行分组。概述了国际、区域和国家各级的管理措施、立法政策、当前处置和越境转移,说明了电子废物收集和处置的现状和挑战。介绍了物理拆卸、部件回收、金属提取和非金属材料再利用等技术,这些技术可以对生态系统产生长期影响。我们主张通过区域合作、立法管理、技术开发和环保设计来支持全球电子垃圾的可持续回收。这项研究为电子垃圾的回收利用提供了一个全球性的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A global perspective on e-waste recycling

Electronic waste (e-waste) is one of the relatively fast-growing solid waste streams, with an annual growth rate of 3%–5%. Although international policies have been formulated to better limit the global transboundary movement of hazardous waste, the existence of illegal trade and “informal” recycling has exacerbated the global recycling of e-waste. At present, residents in many low-income areas are still illegally and unscientifically disposing of e-waste to profit from it. The toxic and harmful substances produced affect the global ecological environment through the geochemical cycle. In this review, we provide a systematic overview of the status quo of e-waste recycling globally. E-waste is placed into a framework, grouped by product type, quantity, composition, environmental health risk, and global impact. Management measures, legislative policies, current disposal, and transboundary movement are summarized at international, regional, and national levels, illustrating the status and challenges of e-waste collection and disposal. Techniques such as physical dismantling, component recycling, metal extraction, and re-utilization of non-metallic materials are described, which can have long-term impact on the ecosystem. We advocate that the global sustainable recycling of e-waste be supported by regional cooperation, legislative management, technology development, and eco-friendly design. This study provides a global solution for the recycling of e-waste.

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