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End-of-life of silicon PV panels: A sustainable materials recovery process

机译:硅光伏面板的寿命终止:可持续的材料回收过程

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In this paper, the management of end-of-life PV modules based on an advanced eco-sustainable process has been presented and discussed. The thermal removal of the polymeric compounds contained in c-Si PV modules has been investigated to separate and recover Si, Ag, Cu, Al and glass. A two-step thermal process has been employed. In the first step, the rear polymeric layer has been removed without emissions of dangerous fluorinated substances. In the second step, the remaining polymers have been completely removed with low volatile organic compounds (VOCs) emissions. The polymers degradation has been studied at combustion equivalent ratios Phi varying from 0.5 to 2 and at 500 degrees C.The materials recovery has been evaluated from an environmental point of view and optimized by considering the energy cost, through the identification of the best operating conditions, in terms of temperature, time, atmosphere and gas flow. One hour of heat treatment and a slightly oxidizing atmosphere have been enabled to separate and recover the different materials of the module. The elemental compositions of the PV sample and the residue condensed organic products have been determined. The gaseous degradation products have been characterized by gas chromatographic analysis (GC). (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,已经提出并讨论了基于先进的生态可持续过程的报废光伏组件的管理。已经研究了热去除包含在c-Si PV组件中的聚合化合物,以分离和回收Si,Ag,Cu,Al和玻璃。已经采用了两步热处理。第一步,在不排放危险的氟化物的情况下去除了背面的聚合物层。第二步,以低挥发性有机化合物(VOC)排放物完全去除了剩余的聚合物。在燃烧当量比Phi为0.5至2且在500摄氏度的条件下研究了聚合物降解情况。从环境的角度评估了材料的回收率,并通过确定最佳运行条件来考虑能源成本来优化材料回收率在温度,时间,大气和气体流量方面。经过一小时的热处理和轻微的氧化气氛,可以分离和回收模块的不同材料。已经确定了PV样品和残留的冷凝有机产物的元素组成。气态降解产物已通过气相色谱分析(GC)进行了表征。 (C)2018 Elsevier Ltd.保留所有权利。

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