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废弃电子电气设备的机械回收:综述

Mechanical recycling of waste electric and electronic equipment: a review.

作者信息

Cui Jirang, Forssberg Eric

机构信息

Division of Mineral Processing, Luleå University of Technology, SE-971 87 Luleå, Sweden.

出版信息

J Hazard Mater. 2003 May 30;99(3):243-63. doi: 10.1016/s0304-3894(03)00061-x.

Abstract

The production of electric and electronic equipment (EEE) is one of the fastest growing areas. This development has resulted in an increase of waste electric and electronic equipment (WEEE). In view of the environmental problems involved in the management of WEEE, many counties and organizations have drafted national legislation to improve the reuse, recycling and other forms of recovery of such wastes so as to reduce disposal. Recycling of WEEE is an important subject not only from the point of waste treatment but also from the recovery of valuable materials.WEEE is diverse and complex, in terms of materials and components makeup as well as the original equipment's manufacturing processes. Characterization of this waste stream is of paramount importance for developing a cost-effective and environmentally friendly recycling system. In this paper, the physical and particle properties of WEEE are presented. Selective disassembly, targeting on singling out hazardous and/or valuable components, is an indispensable process in the practice of recycling of WEEE. Disassembly process planning and innovation of disassembly facilities are most active research areas. Mechanical/physical processing, based on the characterization of WEEE, provides an alternative means of recovering valuable materials. Mechanical processes, such as screening, shape separation, magnetic separation, Eddy current separation, electrostatic separation, and jigging have been widely utilized in recycling industry. However, recycling of WEEE is only beginning. For maximum separation of materials, WEEE should be shredded to small, even fine particles, generally below 5 or 10mm. Therefore, a discussion of mechanical separation processes for fine particles is highlighted in this paper. Consumer electronic equipment (brown goods), such as television sets, video recorders, are most common. It is very costly to perform manual dismantling of those products, due to the fact that brown goods contain very low-grade precious metals and copper. It is expected that a mechanical recycling process will be developed for the upgrading of low metal content scraps.

摘要

电气和电子设备(EEE)的生产是发展最快的领域之一。这种发展导致了废弃电气和电子设备(WEEE)的增加。鉴于WEEE管理中涉及的环境问题,许多国家和组织已起草国家立法,以改善此类废物的再利用、回收及其他形式的回收,从而减少处置。WEEE的回收不仅从废物处理的角度来看是一个重要课题,而且从回收有价值材料的角度来看也是如此。WEEE在材料和部件组成以及原始设备的制造工艺方面具有多样性和复杂性。对这种废物流进行特性描述对于开发具有成本效益和环境友好的回收系统至关重要。本文介绍了WEEE的物理和颗粒特性。选择性拆卸,旨在挑出有害和/或有价值的部件,是WEEE回收实践中不可或缺的过程。拆卸工艺规划和拆卸设施的创新是最活跃的研究领域。基于WEEE的特性描述,机械/物理处理提供了一种回收有价值材料的替代方法。机械工艺,如筛选、形状分离、磁选、涡电流分离、静电分离和跳汰,已在回收行业中广泛应用。然而,WEEE的回收才刚刚起步。为了最大程度地分离材料,WEEE应被粉碎成小的、甚至细的颗粒,通常小于5或10毫米。因此,本文重点讨论了细颗粒的机械分离工艺。消费电子设备(棕色商品),如电视机、录像机等最为常见。由于棕色商品所含贵金属和铜的品位很低,对这些产品进行人工拆解成本很高。预计将开发一种机械回收工艺来提升低金属含量废料的价值。

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