从废弃电气和电子设备(WEEE)中回收有用金属的创新方法

V. Soare, M. Burada, D. Dumitrescu, I. Constantin, V. Soare, A. Popescu, I. Carcea
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引用次数: 5

摘要

废弃电气和电子设备是稀有和贵重金属的重要二次来源,通过生态技术对其进行处理是欧洲联盟的一个主要关切,并大大有助于减少环境污染和保存有色金属的宝贵资源。本文提出了一种对报废电子电气设备中有用金属进行复杂估价的创新方法。该方法包括将报废电子电气设备在温度为1000 ÷1200°C的微波场中熔化,以便将金属部分与有机组分完全分离。熔化过程产生的气体也在微波环境中处理/中和,并通过湿法冶金和电化学相结合的方法处理得到的金属体(多组分合金)。金属体中的主要元素(Cu, Sn, Zn, Pb)分别通过阳极溶解,硝酸浸出,然后用各种剂胶结或电沉积分离/回收。根据电化学参数的不同,可以得到纯度高于99.9%的Cu、Cu- sn和Cu- sn - zn合金的阴极镀层。采用NaCl浸出/沉淀法对银进行价化处理,硫脲萃取法对阳极泥中富集的金进行回收。实验结果表明,通过湿法冶金和电化学相结合的方法,可以在微波场中生态高效地处理报废电子电气设备,并回收有色金属和贵金属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative approach for the valorization of useful metals from waste electric and electronic equipment (WEEE)
Waste electric and electronic equipment are an important secondary source of rare and precious metals and their processing through ecological technologies constitutes a major concern in the European Union and significantly contributes to the reduction of environmental pollution and to the preservation of valuable resources of nonferrous metals. The paper presents an innovative approach for the complex valorization of useful metals contained in WEEE. The method consists in the melting of WEEE in a furnace in a microwave field at temperatures of 1000 ÷1200°C, for the complete separation of the metallic fraction from the organic components. The gases resulting from the melting process were also treated/neutralized in a microwave environment and the obtained metallic bulk (multi-component alloy) was processed through combined hydrometallurgical and electrochemical methods. The major elements in the metallic bulk (Cu, Sn, Zn, Pb) were separated/recovered by anodic dissolution, respectively by leaching in nitric acid followed by cementation using various agents, or by electrodeposition. Depending on the electrochemical parameters, cathodic deposits consisting of Cu, with a purity higher than 99.9%, or of Cu-Sn and Cu-Sn-Zn alloys were obtained. Silver was valorized by leaching/precipitation with NaCl and the gold concentrated in the anodic slime will be recovered by thiourea extraction. The experiments performed demonstrate the possibility of ecological and efficient processing of WEEE in a microwave field and the recovery of nonferrous and precious metals through combined hydrometallurgical and electrochemical methods.
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