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Recycling of Indium From CIGS Photovoltaic Cells: Potential of Combining Acid-Resistant Nanofiltration with Liquid-Liquid Extraction

机译:从CIGS光伏电池中回收铟:将耐酸纳米过滤与液-液萃取相结合的潜力

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摘要

Electronic consumer products such as smart-phones, TV, computers, light-emitting diodes, and photovoltaic cells crucially depend on metals and metalloids. So-called "urban mining" considers them as secondary resources since they may contain precious elements at concentrations many times higher than their primary ores. Indium is of foremost interest being widely used, expensive, scarce and prone to supply risk. This study first investigated the capability of different nanofiltration membranes of extracting indium from copper-indium-gallium-selenide photovoltaic cell (CIGS) leachates under low pH conditions and low transmembrane pressure differences (<3 bar). Retentates were then subjected to a further selective liquid-liquid extraction (LLE), Even at very acidic pH indium was retained to >98% by nanofiltration, separating it from parts of the Ag, Sb, Se, and Zn present. LLE using di-(2-ethylhexyl)phosphoric acid (D2EHPA) extracted 97% of the indium from the retentates, separating it from all other elements except for Mo, Al, and Sn. Overall, 95% (2.4 g m~(-2) CIGS) of the indium could be extracted to the D2EHPA phase. Simultaneously, by nanofiltration the consumption of D2EHPA was reduced by >60% due to the metal concentration in the reduced retentate volume. These results show clearly the potential for efficient scarce metal recovery from secondary resources. Furthermore, since nanofiltration was applicable at very low pH (≥0.6), it may be applied in hydrometallurgy typically using acidic conditions.
机译:电子消费产品(例如智能电话,电视,计算机,发光二极管和光伏电池)主要取决于金属和准金属。所谓的“城市采矿”将它们视为辅助资源,因为它们可能包含的珍贵元素的浓度比其原始矿石高出许多倍。铟是被广泛使用,价格昂贵,稀缺并易于发生供应风险的首要问题。本研究首先研究了不同的纳滤膜在低pH条件和低跨膜压差(<3 bar)下从铜铟镓硒硒化光伏电池(CIGS)浸出液中提取铟的能力。然后将渗余物进行进一步的选择性液-液萃取(LLE),即使在非常酸性的pH值下,也可以通过纳滤将铟保留到> 98%,将其与存在的部分Ag,Sb,Se和Zn分离。使用二(2-乙基己基)磷酸(D2EHPA)的LLE从渗余物中提取了97%的铟,并将其与除Mo,Al和Sn之外的所有其他元素分离。总体上,可以将95%(2.4 g m〜(-2)CIGS)的铟提取到D2EHPA相中。同时,由于减少了截留体积中的金属浓度,通过纳滤,D2EHPA的消耗减少了> 60%。这些结果清楚地表明了从二次资源中有效回收稀有金属的潜力。此外,由于纳滤适用于非常低的pH(≥0.6),因此通常可在酸性条件下应用于湿法冶金。

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  • 来源
    《Environmental Science & Technology》 |2014年第22期|13412-13418|共7页
  • 作者单位

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland,Institute for Environmental Research (Biology Ⅴ), RWTH Aachen University, 52074 Aachen, Germany;

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland;

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland,Department of Environmental Technology, Wageningen University, 6708 WG Wageningen, The Netherlands;

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland;

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland,State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Hankou Road 22, 210093, Nanjing, China;

    Institute for Environmental Research (Biology Ⅴ), RWTH Aachen University, 52074 Aachen, Germany,State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Hankou Road 22, 210093, Nanjing, China;

    Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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