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Synthesis of cuprous chloride and simultaneous recovery of Ag and Pd from waste printed circuit boards

机译:氯化亚铜的合成以及从废印刷电路板中同时回收银和钯

摘要

A benign and effective process for cuprous chloride synthesis and simultaneously recovery of Ag and Pd from waste printed circuit boards (PCBs) was developed in the present study. The main merit of the process is that neither corrosive acid nor strong oxidant was used. The PCBs were firstly pretreated by thermal shock process to obtain metallic particles (MPs), then cuprous chloride was synthesized by reacting MPs with cupric sulfate in the presence of sodium chloride. The optimum V-NaCl/m(CuSO4) (mL/g) ratio, [Cu][Cu2+] mole ratio, treatment time and operation temperature were 6, 0.95, 30 min and 60 degrees C, respectively. Approximately 98.5% of Cu could be recovered from the PCBs through two synthesis circles. During the synthesis process, Ag and Pd could be simultaneously recovered by forming a stable chloride complex since Cu2+ played the role of oxidant in the system. The recovery percentages of Ag and Pd were 93.9% and 95.3%, respectively. Accordingly, it is believed that the process developed in the current study is benign and practical for copper and precious metal (Ag, Pd) recovery from waste PCBs. (C) 2013 Elsevier B.V. All rights reserved.
机译:在本研究中,开发了一种良性且有效的氯化亚铜合成方法,同时可从废印刷电路板(PCB)中回收Ag和Pd。该方法的主要优点是既不使用腐蚀性酸也不使用强氧化剂。首先通过热冲击工艺对PCB进行预处理,以获得金属颗粒(MP),然后在氯化钠的存在下,通过使MP与硫酸铜反应来合成氯化亚铜。最佳V-NaCl / m(CuSO4)(mL / g)比,[Cu] [Cu2 +]摩尔比,处理时间和操作温度分别为6、0.95、30分钟和60摄氏度。通过两个合成环可以从多氯联苯中回收大约98.5%的铜。在合成过程中,由于Cu2 +在系统中起氧化剂的作用,因此可以通过形成稳定的氯化物络合物同时回收Ag和Pd。 Ag和Pd的回收率分别为93.9%和95.3%。因此,据信当前研究中开发的方法对于从废弃的多氯联苯中回收铜和贵金属(Ag,Pd)是有益的和实用的。 (C)2013 Elsevier B.V.保留所有权利。

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