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首页> 外文期刊>Journal of Cleaner Production >Environmentally friendly hydrometallurgical recovery of tin and lead from waste printed circuit boards: Thermodynamic and kinetics studies
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Environmentally friendly hydrometallurgical recovery of tin and lead from waste printed circuit boards: Thermodynamic and kinetics studies

机译:从废印刷电路板中回收锡和铅的环保湿法冶金:热力学和动力学研究

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The aim of this research was to develop an environmentally friendly fiowsheet to recover Sn and Pb, which are two well-known hazardous elements, from waste printed circuit boards (PCBs), resulting in solving an environmental issue besides reproducing high-value metals. In the leaching process, the highest Sn and Pb recoveries of 88% and 99% were achieved by using 2 M hydrochloric acid (HCl) at an agitation rate of 500 RPM at 75 degrees C. Thermodynamic evaluations were employed successfully to confirm the leaching results. The kinetics studies indicated that the reaction mechanism shifted from a mixed control model (surface reaction control and diffusion through product layer) to the diffusion control, by increasing the agitation rate. The temperature and acid concentration controlled the dissolution by the diffusion mechanism. Production of an ash layer on the particle surface suppressed Sn and Pb dissolution as a result of enhancing both the temperature and acid concentration. The results of the kinetics modeling have been validated by scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS) studies. The activation energies for Sn and Pb were found to be 39.49 and 50.60 kJ/mol, respectively. The Fourier-transform infrared spectroscopy (FTIR) indicated the presence of alkyne and alkyl halides, as well as carboxylic and aromatic components, in the pregnant leach solution. The metallic Sn-Pb product was obtained by using Al-based heat sink scrap separated from the same PCBs via the cementation method. The SEM and X-ray mapping studies were carried out to characterize this product. The selectivity of the cementation method for Sn and Pb was confirmed by the above mentioned methods. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是开发一种环保的板材,以从废印刷电路板(PCB)中回收作为众所周知的两种有害元素的Sn和Pb,从而除了生产高价值金属外,还解决了环境问题。在浸出过程中,通过在75°C下以500 RPM的搅拌速度使用2 M盐酸(HCl),可实现88%和99%的最高Sn和Pb回收率。成功地使用热力学评估来确认浸出结果。动力学研究表明,通过增加搅拌速率,反应机理从混合控制模型(表面反应控制和通过产物层的扩散)转变为扩散控制。温度和酸浓度通过扩散机理控制溶解。由于同时提高温度和酸浓度,在颗粒表面产生灰分层抑制了Sn和Pb的溶解。动力学建模的结果已通过扫描电子显微镜(SEM)和能量色散X射线光谱(EDS)研究得到验证。发现Sn和Pb的活化能分别为39.49和50.60 kJ / mol。傅立叶变换红外光谱(FTIR)表明,在浸出液中存在炔烃和卤代烷以及羧酸和芳族组分。金属Sn-Pb产品是通过使用铝基散热器废料通过胶结法从相同的PCB分离而获得的。进行了SEM和X射线映射研究以表征该产品。通过上述方法确认了Sn和Pb的胶结方法的选择性。 (C)2019 Elsevier Ltd.保留所有权利。

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