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Recovery of Gold and Silver from Secondary Sources of Electronic Waste Processing by Thiourea Leaching

机译:通过硫脲浸出从二级电子废物处理中恢复金和银

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摘要

Fine materials, such as flue dust, generated during processing of electronic waste (e-waste) contain valuable metal resources, such as Au and Ag. However, recovery of valuable metals from this flue dust has not been extensively studied. In this study, a leaching process was investigated for effective recovery of Au and Ag from flue dust. In particular, thiourea was used as leaching reagent to replace cyanide, which has environmental problems. The effects of various parameters on the process, such as leaching time (1-10 h), thiourea concentration (20-60 g/L), and pulp density (20-100 g/L) as well as reaction temperature (20-60A degrees C), were systematically examined. One- and two-step leaching methods were proposed to recover Au and Ag, respectively. Au and Ag leaching efficiencies of about 90% and 100% were obtained by one-step thiourea leaching. However, metals such as Fe and Al were also dissolved together. In the two-step process, Fe and Al were dissolved using H2SO4 as a first step, then Au and Ag were recovered using thiourea leaching. Using this two-step process, Au and Ag were dissolved at higher purity than when using the one-step leaching process, achieving leaching efficiencies of about 98% and 100%, respectively. This investigation will lead to a cost-effective method for recovering precious metals from secondary waste.
机译:在加工电子废物(电子废物)期间产生的精细材料(例如烟道粉尘)含有有价值的金属资源,例如Au和Ag。然而,从该烟道灰尘恢复有价值的金属尚未得到广泛研究。在这项研究中,研究了浸出过程,以有效地回收来自烟道粉尘的AU和AG。特别是,硫脲被用作浸出试剂以取代氰化物,这具有环境问题。各种参数对方法的影响,例如浸出时间(1-10小时),硫脲浓度(20-60g / L)和纸浆密度(20-100g / L)以及反应温度(20- 60A度C)被系统地检查。提出了一种和两步浸出方法以分别回收Au和Ag。通过一步的硫脲浸出,获得约90%和100%的Au和Ag浸出效率。但是,如Fe和Al等金属也溶解在一起。在两步过程中,使用H 2 SO 4作为第一步溶解Fe和Al,然后使用硫脲浸出回收Au和Ag。使用该两步过程,将Au和Ag溶解在纯度高于使用单步浸出过程时,分别达到约98%和100%的浸出效率。该调查将导致从二次浪费中回收贵金属的成本效益。

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