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Recovery of valuable materials from waste liquid crystal display panel

机译:从废液晶显示面板中回收有价值的材料

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摘要

Associated with the rapid development of the information and electronic industry, liquid crystal displays (LCDs) have been increasingly sold as displays. However, during the discarding at their end-of-Iife stage, significant environmental hazards, impacts on health and a loss of resources may occur, if the scraps are not managed in an appropriate way. In order to improve the efficiency of the recovery of valuable materials from waste LCDs panel in an environmentally sound manner, this study presents a combined recycling technology process on the basis of manual dismantling and chemical treatment of LCDs. Three key processes of this technology have been studied, including the separation of LCD polarizing film by thermal shock method the removal of liquid crystals between the glass substrates by the ultrasonic cleaning, and the recovery of indium metal from glass by dissolution. The results show that valuable materials (e.g. indium) and harmful substances (e.g. liquid crystals) could be efficiently recovered or separated through above-mentioned combined technology. The optimal conditions are: (1) the peak temperature of thermal shock to separate polarizing film, ranges from 230 to 240 ℃, where pyrolysis could be avoided; (2) the ultrasonic-assisted cleaning was most efficient at a frequency of 40 KHz (P = 40 W) and the exposure of the substrate to industrial detergents for 10 min; and (3) indium separation from glass in a mix of concentrated hydrochloric acid at 38% and nitric acid at 69% (HCI:HNO_3:H_2O = 45:5:50, volume ratio). The indium separation process was conducted with an exposure time of 30 min at a constant temperature of 60 ℃.
机译:随着信息和电子工业的迅速发展,液晶显示器(LCD)已经越来越多地作为显示器出售。但是,如果未对废料进行适当的管理,在报废阶段即废弃期间,可能会发生严重的环境危害,对健康的影响和资源的损失。为了以无害环境的方式提高从废旧LCD面板中回收有价值材料的效率,本研究提出了一种基于人工拆解和化学处理LCD的联合回收技术工艺。已经研究了该技术的三个关键过程,包括通过热冲击法分离LCD偏振膜,通过超声清洗去除玻璃基板之间的液晶以及通过溶解从玻璃中回收铟金属。结果表明,通过上述组合技术可以有效地回收或分离有价值的材料(例如铟)和有害物质(例如液晶)。最佳条件为:(1)分离偏光膜的热冲击峰值温度为230〜240℃,可避免热解。 (2)超声辅助清洁在40 KHz(P = 40 W)的频率下最有效,并且基材在工业洗涤剂中的暴露时间为10分钟; (3)在38%浓盐酸和69%硝酸(HCl∶HNO_3∶H_2O = 45∶5∶50,体积比)的混合物中从玻璃中分离铟。铟的分离过程在60℃的恒定温度下进行30分钟的暴露时间。

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  • 来源
    《Waste Management》 |2009年第7期|2033-2039|共7页
  • 作者单位

    Department of Environmental Science and Engineering, Tsinghua University, China Sino-Italia Environmental Energy Building, Room 804, Haidian District, Beijing 100084, China;

    Department of Environmental Science and Engineering, Tsinghua University, China;

    Department of Environmental Science and Engineering, Tsinghua University, China;

    Department of Environmental Science and Engineering, Tsinghua University, China;

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