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Materials recovery from waste liquid crystal displays: A focus on indium

机译:从废旧液晶显示器中回收材料:以铟为重点

摘要

In the present work the recovery of indium and of the polarizing film from waste liquid crystal displays was experimentally investigated in the laboratory. First of all, the polarizing film was removed by employing a number of different techniques, including thermal and chemical treatments. Leaching of indium was then performed with HCl 6 N, which allowed solubilisation of approximately 90% In (i.e. 260 mg In per kg of glass) at room temperature, without shredding. Indium recovery from the aqueous phase was then investigated through solvent extraction with polyethylene glycol (PEG)-based aqueous biphasic systems. Indium extraction tests through the PEG-ammonium sulphate-water system were conducted as a function of PEG concentration, salt concentration and molecular weight of PEG, using 1,10 phenanthroline as a ligand. The experimental results demonstrated that indium partitioning between the bottom (salt-rich) and the top (PEG-rich) phase is quite independent on the composition of the system, since 80-95% indium is extracted in the bottom phase and 5-20% in the top phase; it was also found that when PEG concentration is increased, the ratio between the bottom and the upper phase volumes decreases, resulting in an increase of indium concentration in the bottom phase (at [PEG]=25% w/w, indium concentration in the bottom phase is ~30% higher than the initial concentration before the extraction).
机译:在当前的工作中,在实验室中通过实验研究了从废液晶显示器中回收铟和偏振膜的方法。首先,通过采用多种不同的技术(包括热处理和化学处理)去除偏光膜。然后用6 N HCl浸提铟,在室温下可溶解约90%In(即每公斤玻璃260 mg In),而不会粉碎。然后,通过使用基于聚乙二醇(PEG)的双相水溶液萃取溶剂,研究了从水相中回收铟的方法。使用1,10菲咯啉作为配体,通过PEG-硫酸铵-水系统进行的铟萃取试验是PEG浓度,盐浓度和PEG分子量的函数。实验结果表明,在底部(富盐)相和顶部(富PEG)相之间的铟分配非常独立于系统的组成,因为在底部相和5-20中提取了80-95%的铟最高阶段的百分比;还发现,当PEG浓度增加时,底部相和上部相之间的体积比减小,导致底部相中的铟浓度增加(在[PEG] = 25%w / w时,底部相中的铟浓度升高)。底部相比萃取前的初始浓度高约30%)。

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