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使用可充气变径分离床从废弃电路板中分离和回收细颗粒。

Separation and recovery of fine particles from waste circuit boards using an inflatable tapered diameter separation bed.

作者信息

Duan Chenlong, Sheng Cheng, Wu Lingling, Zhao Yuemin, He Jinfeng, Zhou Enhui

机构信息

China University of Mining & Technology, No. 1, Daxue Road, Quanshan District, Xuzhou 221116, China.

出版信息

ScientificWorldJournal. 2014;2014:843579. doi: 10.1155/2014/843579. Epub 2014 Oct 15.

Abstract

Recovering particle materials from discarded printed circuit boards can enhance resource recycling and reduce environmental pollution. Efficiently physically separating and recovering fine metal particles (-0.5 mm) from the circuit boards are a key recycling challenge. To do this, a new type of separator, an inflatable tapered diameter separation bed, was developed to study particle motion and separation mechanisms in the bed's fluid flow field. For 0.5-0.25 mm circuit board particles, metal recovery rates ranged from 87.56 to 94.17%, and separation efficiencies ranged from 87.71 to 94.20%. For 0.25-0.125 mm particles, metal recovery rates ranged from 84.76 to 91.97%, and separation efficiencies ranged from 84.74 to 91.86%. For superfine products (-0.125 mm), metal recovery rates ranged from 73.11 to 83.04%, and separation efficiencies ranged from 73.00 to 83.14%. This research showed that the inflatable tapered diameter separation bed achieved efficient particle separation and can be used to recover fine particles under a wide range of operational conditions. The bed offers a new mechanical technology to recycle valuable materials from discarded printed circuit boards, reducing environmental pollution.

摘要

从废弃印刷电路板中回收颗粒材料可以加强资源回收利用并减少环境污染。有效地从电路板中物理分离和回收细金属颗粒(-0.5毫米)是回收利用面临的关键挑战。为此,开发了一种新型分离器——充气变径分离床,以研究颗粒在床层流体流场中的运动和分离机制。对于0.5-0.25毫米的电路板颗粒,金属回收率在87.56%至94.17%之间,分离效率在87.71%至94.20%之间。对于0.25-0.125毫米的颗粒,金属回收率在84.76%至91.97%之间,分离效率在84.74%至91.86%之间。对于超细产品(-0.125毫米),金属回收率在73.11%至83.04%之间,分离效率在73.00%至83.14%之间。这项研究表明,充气变径分离床实现了高效的颗粒分离,可用于在广泛的操作条件下回收细颗粒。该床提供了一种新的机械技术,用于从废弃印刷电路板中回收有价值的材料,减少环境污染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d7/4213985/789b453da1e0/TSWJ2014-843579.001.jpg

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