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An integrated and environmental-friendly technology for recovering valuable materials from waste tantalum capacitors

机译:一种集成的环保技术,用于从废钽电容器中回收有价值的材料

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摘要

Waste printed circuit boards (WPCBs) are valuable urban ore for recycling. Many efforts have been done to recover resources from basal boards of WPCB. In addition to basal boards, WPCBs contain many electronic components. However, the recycling technology for electronic components has been poorly developed. This study proposed an integrated and environment-friendly technology for recycling waste tantalum capacitors (WTCs) of WPCBs. Firstly, the WTCs were treated by argon pyrolysis to decompose mold resin. The pyrolysis temperature of 550 degrees C and holding time for 30 min were considered as the optimal parameters. Then, the pyrolysis residues were performed by crush and magnetic separation to recover nickel-iron terminals. Finally, chloride metallurgy (CM) was used to recover rare metal tantalum (Ta). The Ta recovery rate could reach 92.87 +/- 036%. The optimal parameters were determined as temperature of 493 degrees C, adding FeCl2.4H(2)O of 53 wt% and holding time for 150 min based on the response surface methodology (RSM). This study exploits an efficient approach for recycling WTCs and provides a reference for future industrial application. (C) 2017 Elsevier Ltd. All rights reserved.
机译:废印刷电路板(WPCB)是可回收的宝贵城市矿石。为了从WPCB的基础板上恢复资源,已经做了很多努力。除了基板以外,WPCB还包含许多电子组件。但是,电子部件的回收技术发展不佳。这项研究提出了一种集成的,环保的技术,用于回收WPCB的废钽电容器(WTC)。首先,通过氩气热解处理WTC,以分解模具树脂。 550℃的热解温度和30分钟的保持时间被认为是最佳参数。然后,通过粉碎和磁选进行热解残余物以回收镍-铁端子。最后,使用氯化冶金(CM)回收稀有金属钽(Ta)。 Ta的回收率可达到92.87 +/- 036%。确定最佳参数为温度493摄氏度,添加53 wt%的FeCl2.4H(2)O,并根据响应表面方法(RSM)保持150分钟。这项研究开发了一种回收WTC的有效方法,并为将来的工业应用提供了参考。 (C)2017 Elsevier Ltd.保留所有权利。

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