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酸浸预处理对废旧手机印刷电路板中金提取的影响

Effect of Acid Leaching Pre-Treatment on Gold Extraction from Printed Circuit Boards of Spent Mobile Phones.

作者信息

Ippolito Nicolò Maria, Medici Franco, Pietrelli Loris, Piga Luigi

机构信息

Department of Industrial and Information Engineering and Economics, University of L'Aquila, Via Giovanni Gronchi 18, Zona industrial Pile, 67100 L'Aquila, Italy.

Department of Chemical Engineering, Materials and Environment, Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, Italy.

出版信息

Materials (Basel). 2021 Jan 13;14(2):362. doi: 10.3390/ma14020362.

Abstract

The effect of a preliminary acid leaching for the recovery of gold by thiourea from printed circuit boards (PCBs) of spent mobile phones, was investigated. Preliminary leaching is aimed to recover copper in the leachate that would compete with gold in the successive leaching of the residue with thiourea, thus preventing the formation of the gold-thiourea complex. Two hydrometallurgical routes were tested for the recovery of copper first, and gold after. The first one was based on a two-step leaching that utilizes sulfuric acid and hydrogen peroxide in the preliminary leaching and then thiourea for the recovery of gold in the successive leaching: A copper and gold recovery of 81% and 79% were obtained, respectively. In the second route, nitric acid was used: 100% of copper was recovered in the leachate and 85% of gold in the thiourea successive leaching. The main operative parameters, namely thiourea and ferric sulphate concentrations, leach time, liquid-solid ratio, and temperature were studied according to a factorial plan strategy. A flowsheet of the processes was proposed, and a mass balance of both routes was obtained. Finally, qualitative considerations on the technical and economic feasibility of the different routes were made.

摘要

研究了采用初步酸浸从废旧手机印刷电路板(PCBs)中通过硫脲回收金的效果。初步浸出旨在回收浸出液中的铜,因为铜会在后续用硫脲浸出残渣时与金竞争,从而阻止金 - 硫脲络合物的形成。测试了两种湿法冶金路线,先回收铜,后回收金。第一种基于两步浸出,在初步浸出中使用硫酸和过氧化氢,然后在后续浸出中使用硫脲回收金:铜和金的回收率分别为81%和79%。在第二条路线中,使用硝酸:浸出液中铜的回收率为100%,硫脲后续浸出中金的回收率为85%。根据析因计划策略研究了主要操作参数,即硫脲和硫酸铁浓度、浸出时间、液固比和温度。提出了工艺流程,并获得了两条路线的质量平衡。最后,对不同路线的技术和经济可行性进行了定性考量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f329/7828416/d9032bf2cd1a/materials-14-00362-g001.jpg

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