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An efficient rough vacuum-chlorinated separation method for the recovery of indium from waste liquid crystal display panels

机译:从废旧液晶显示面板中回收铟的有效粗真空氯化分离方法

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In this study, an efficient rough vacuum-chlorinated separation method was developed for the recovery of indium from waste liquid crystal display (LCD) panels using NH4C1 as the chlorinating agent. High purity In2O3 and SnO2 were firstly investigated in a rough vacuum, air and nitrogen atmosphere. The results indicated that the rough vacuum atmosphere could increase the recovery ratio of indium and reduce the influence of tin simultaneously. Moreover, the indium chloride and NH4CI can be selectively recovered under different condensing temperatures, and the thermodynamic principle of the recovery method was analyzed. Conditions of 400 癈, 10 min, rough vacuum atmosphere (0.09 MPa) and sufficient NH4CI (molar Cl/In ratio of 6) were confirmed as the optimal conditions by pure substance experiments. The waste LCD glass powder was used to recover indium. The weight ratio of NH4C1 to glass powder and the optimum particle size were confirmed as 1:2 and less than 0.13 mm, respectively. The pure indium chloride was successfully recovered from the waste LCD panels using this method, and the recovery percentage of indium and the purity of indium chloride are 98.02 and 99.50%, respectively. This work presented a promising technology for the cyclic regeneration of the precious metal indium from waste LCD panels.
机译:在这项研究中,开发了一种有效的粗真空氯化分离方法,该方法使用NH4Cl作为氯化剂从废旧液晶显示器(LCD)面板中回收铟。首先在粗糙的真空,空气和氮气气氛中研究了高纯度的In2O3和SnO2。结果表明,粗糙的真空气氛可以提高铟的回收率,同时减少锡的影响。此外,可以在不同的冷凝温度下选择性地回收氯化铟和NH4Cl,并分析了该回收方法的热力学原理。通过纯物质实验确定了400癈,10分钟,粗糙的真空气氛(0.09 MPa)和足够的NH4Cl(摩尔Cl / In比为6)的条件是最佳条件。 LCD废玻璃粉用于回收铟。 NH4Cl与玻璃粉的重量比和最佳粒径分别确定为1:2和小于0.13mm。使用该方法成功地从废旧LCD面板中回收了纯氯化铟,铟的回收率和氯化铟的纯度分别为98.02%和99.50%。这项工作为从废旧LCD面板循环再生贵金属铟提供了一种有前途的技术。

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