Recovery of critical metals from LCDs and Li-ion batteries

A. Amato, L. Rocchetti, Viviana Fonti, T. A. Atia, P. Altimari, E. Moscardini, L. Toro, F. Pagnanelli, F. Beolchini
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引用次数: 5

Abstract

In 2014, the European Union defined a list of 20 raw materials critical for economic importance and high supply risk. The aim of this work is to present the main results achieved within the EU-FP7 Project HydroWEEE-Demo dealing with the recovery of indium and cobalt, metals included in such European list, from LCD scraps and end of life Li-ion batteries, respectively. A complete indium recovery was achieved carrying out an acidic leaching, followed by a zinc cementation. Cobalt was extracted from the electrodic powder according to the following main operations: leaching (by acid reducing conditions), primary purification (by precipitation of metal impurities), solvent extraction with D2EPHA (for the removal of metal impurities), solvent extraction with Cyanex 272 (for the separation of cobalt from nickel), cobalt recovery (by precipitation as cobalt hydroxide). Co products with 95% purity were obtained by implementation of the solvent extraction with D2EHPA and Cyanex 272.
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从液晶显示器和锂离子电池中回收关键金属
2014年,欧盟列出了20种对经济重要性和高供应风险至关重要的原材料。这项工作的目的是展示在EU-FP7项目HydroWEEE-Demo中所取得的主要成果,该项目分别从LCD废料和报废锂离子电池中回收铟和钴,这两种金属都包含在欧洲清单中。通过酸性浸出实现了铟的完全回收,然后进行锌胶结。从电粉中提取钴的主要操作有:浸出(酸还原条件下)、一次提纯(金属杂质沉淀)、D2EPHA溶剂萃取(去除金属杂质)、Cyanex 272溶剂萃取(钴镍分离)、钴回收(沉淀为氢氧化钴)。用D2EHPA和Cyanex 272进行溶剂萃取,得到纯度为95%的Co产品。
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