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Investigation of an Electrochemical Method for Separation of Copper Indium and Gallium from Pretreated CIGS Solar Cell Waste Materials

机译:从预处理的CIGS太阳能电池废料中分离铜铟和镓的电化学方法研究

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摘要

Recycling of the semiconductor material copper indium gallium diselenide (CIGS) is important to ensure a future supply of indium and gallium, which are relatively rare and therefore expensive elements. As a continuation of our previous work, where we recycled high purity selenium from CIGS waste materials, we now show that copper and indium can be recycled by electrodeposition from hydrochloric acid solutions of dissolved selenium-depleted material. Suitable potentials for the reduction of copper and indium were determined to be −0.5 V and −0.9 V (versus the Ag/AgCl reference electrode), respectively, using cyclic voltammetry. Electrodeposition of first copper and then indium from a solution containing the dissolved residue from the selenium separation and ammonium chloride in 1 M HCl gave a copper yield of 100.1 ± 0.5% and an indium yield of 98.1 ± 2.5%. The separated copper and indium fractions contained no significant contamination of the other elements. Gallium remained in solution together with a small amount of indium after the separation of copper and indium and has to be recovered by an alternative method since electrowinning from the chloride-rich acid solution was not effective.
机译:半导体材料二硒化铜铟镓硒(CIGS)的回收对于确保铟和镓的未来供应非常重要,铟和镓是相对稀有的,因此价格昂贵。作为我们先前工作的延续,我们从CIGS废料中回收了高纯度硒,现在,我们表明可以通过电解沉积贫硒材料的盐酸溶液来回收铜和铟。使用循环伏安法分别确定了用于还原铜和铟的合适电势为-0.5 V和-0.9 V(相对于Ag / AgCl参比电极)。在含1eM HCl的硒分离溶液和氯化铵溶液中,先电解沉积铜,然后电解铟,得到的铜收率为100.1±0.5%,铟的收率为98.1±2.5%。分离出的铜和铟部分不包含其他元素的明显污染。铜和铟分离后,镓和少量的铟一起保留在溶液中,由于从富含氯化物的酸溶液中进行电沉积是无效的,因此必须通过其他方法进行回收。

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