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首页> 外文期刊>Journal of Cleaner Production >Integrated process for recycling aluminum electrolytic capacitors from waste printed circuit boards: Disassembly, heat treatment and magnetic-eddy current-electrostatic separating
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Integrated process for recycling aluminum electrolytic capacitors from waste printed circuit boards: Disassembly, heat treatment and magnetic-eddy current-electrostatic separating

机译:从废印刷电路板中回收铝电解电容器的集成过程:拆卸,热处理和磁涡流-静电分离

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摘要

An aluminum electrolytic capacitor (AEC), mounted on a printed circuit board (PCB), is an integral part of any electronic product. Currently, a great many waste AECs are generated from almost all kinds of end-of-life electronic products. The waste AEC is hazardous waste because the electrolyte contained in it is toxic, demanding safe disposal. However, the recycling technology has been poorly developed. This article presented a novel attempt to deal with AECs disassembled from waste PCBs, including heat treatment, crushing, and multistage physical separations. Firstly, the electrolyte contained in waste AECs was removed by heat treatment. Secondly, the residue was crushed to liberate metals (aluminum and iron) from nonmetals, and the pins (iron) were magnetically separated from other substances. Thirdly, the remaining components were sieved, and the particles with the particle size >1.6 mm were subjected to eddy current separation, and the particles with the particle size <1.6 mm were subjected to electrostatic separation. Finally, an integrated recycling process was developed based on the above studies. Under the optimum conditions, the total separation efficiency and the grade of aluminum were 87.9% and 98.25%, respectively. This study provides a feasible method for waste AECs recycling in an efficient and environmentally way. (C) 2017 Elsevier Ltd. All rights reserved.
机译:安装在印刷电路板(PCB)上的铝电解电容器(AEC)是任何电子产品的组成部分。当前,几乎所有报废电子产品都会产生大量废品AEC。废料AEC是有害废料,因为其中所含的电解质是有毒的,需要安全处理。但是,回收技术发展较差。本文提出了一种新颖的尝试来处理从废PCB拆卸的AEC,包括热处理,粉碎和多级物理分离。首先,通过热处理除去废AEC中所含的电解质。其次,将残留物压碎以从非金属中释放出金属(铝和铁),然后将销钉(铁)与其他物质磁性分离。第三,筛分剩余的成分,并对粒径> 1.6mm的颗粒进行涡流分离,并对粒径<1.6mm的颗粒进行静电分离。最后,基于上述研究开发了综合的回收过程。在最佳条件下,总分离效率和铝品位分别为87.9%和98.25%。这项研究提供了一种有效且环保的方式来回收废弃AEC的可行方法。 (C)2017 Elsevier Ltd.保留所有权利。

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