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首页> 外文期刊>Journal of Cleaner Production >Pre-concentration and recovery of silver and indium from crystalline silicon and copper indium selenide photovoltaic panels
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Pre-concentration and recovery of silver and indium from crystalline silicon and copper indium selenide photovoltaic panels

机译:从晶体硅和铜铟硒化光伏面板中预富集和回收银和铟

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摘要

The circular use of critical raw materials is regarded as a topic of contemporary interest stimulating continuous research and development to reduce primary resource use and waste production. However, due to the low mass share of such materials in waste streams, the industrial sector mainly focuses on the recovery of bulk components (e.g. base metals). Even in laboratory-scale studies, the fate of critical raw materials through the recycling chain, and the important role of pre-concentration prior to selective recovery have not been sufficiently addressed. To this scope, this study evaluates the mass flow of Ag and In during the treatment of waste polycrystalline silicon and monocrystalline silicon, as well as copper indium selenide photovoltaic panels in order to produce valuable pre-concentrates of these metals. The treatment routes, used in various combinations, are (a) thermal treatment and gravimetric separation, (a) mechanical crushing, sieving and thermal treatment, as well as (c) chemical and thermal treatment of the panels. The pre-concentration yield was investigated assessing the content of Ag or In (mg/kg) in the treated mass share (%) as compared to the initial content and photovoltaic mass used. Then, the selective recovery of Ag or In from the produced treated fractions, which are enriched in Ag or In, was studied through acid leaching and precipitation. Thermal treatment and gravimetric separation resulted in intact target-components and optimal pre-concentration yield of Ag and In (91.42 and 94.25% for crystalline panels, and 96.10% for copper indium selenide panel). A maximum leaching capacity of Ag and In was obtained using HNO3 and H2SO4 solution, respectively. Pure silver chloride (AgCl) was recovered using HCl as precipitating agent and pure indium hydroxide (In2O3) using NH4OH. Overall, the study pointed out that waste photovoltaic panels are new and complex products that can be considered as secondary sources to recover Ag and In, when a suitable combination of treatment processes is applied. (C) 2019 Elsevier Ltd. All rights reserved.
机译:关键原材料的循环使用被认为是当代引起人们兴趣的主题,它刺激了持续的研发,以减少主要资源的使用和废物的产生。但是,由于这些材料在废物流中的份额很低,因此工业部门主要集中在回收散装组分(例如贱金属)上。即使在实验室规模的研究中,关键的原材料在回收链中的去向以及选择性浓缩在选择性回收之前的重要作用也没有得到充分解决。在此范围内,这项研究评估了在处理废多晶硅和单晶硅以及硒化铜铟硒光伏电池板过程中Ag和In的质量流量,以生产这些金属的有价值的预浓缩物。以各种组合使用的处理途径是(a)热处理和重量分离,(a)机械粉碎,筛分和热处理以及(c)面板的化学和热处理。研究了浓缩前的收率,以评估与初始含量和所用光伏质量相比,处理后的质量百分比(%)中Ag或In的含量(mg / kg)。然后,通过酸浸和沉淀研究了从所生产的富含银或铟的处理级分中选择性回收银或铟的方法。热处理和重量分离可得到完整的目标组分,并具有最佳的Ag和In浓度(结晶板为91.42和94.25%,硒化铜铟板为96.10%)。分别使用HNO3和H2SO4溶液获得了Ag和In的最大浸出能力。使用HCl作为沉淀剂回收纯氯化银(AgCl),并使用NH4OH回收纯氢氧化铟(In2O3)。总体而言,该研究指出,废光伏板是新的复杂产品,当采用适当的处理工艺组合时,可以视为回收Ag和In的次要来源。 (C)2019 Elsevier Ltd.保留所有权利。

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