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Separation and Recovery of Valuable Elements from Spent CIGS Materials

机译:来自CIGS材料的有价值的元素的分离和恢复

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摘要

A separation-recovery method was proposed in this study to recover valuable elements from spent copper- indium-gallium-selenium (CIGS) materials based on the different physical and chemical properties of their components. Spent CIGS materials were first roasted at 1000 °C to achieve phase transformation. During the transformation, 99.9% selenium was volatilized and recovered via oxidation into selenium dioxide. Meanwhile, other metals were converted from selenides to oxides. Subsequently, the indium and gallium in the roasting product were separated from copper via sulfuric acid leaching and precipitation. After the precipitation product was roasted, mixed oxides that contained 90.59% indium oxide and gallium oxide were obtained. The recovery rates of indium and gallium were 97.74% and 97.41%, respectively. Lastly, 99.83% of the copper in the filtrate was recovered via solvent extraction. The selective separation and recovery of valuable metals can be achieved through the rational utilization of the physical and chemical properties of elements in spent CIGS materials.
机译:本研究提出了一种分离回收方法,以根据其组分的不同物理和化学性质从废铜铟 - 镓 - 硒(CIGS)材料中回收有价值的元素。将CIGS材料在1000℃下首先烘烤以实现相变。在转化期间,通过氧化将99.9%的硒挥发并通过氧化成二氧化硒。同时,将其他金属从硒化物转化为氧化物。随后,通过硫酸浸出和沉淀将焙烧产物中的铟和镓与铜分离。沉淀产物焙烧后,得到含有90.59%氧化铟和氧化镓的混合氧化物。铟和镓的回收率分别为97.74%和97.41%。最后,通过溶剂萃取回收滤液中的99.83%的铜。可以通过合理利用花费CIGS材料中元素的物理和化学性质的合理利用来实现有价值金属的选择性分离和恢复。

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