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Efficient indium leaching and recovery from waste liquid crystal displays panels using microwave and ultrasound-assisted heating system

机译:从废液晶体浸出和回收利用微波和超声波辅助加热系统的高效次射击和恢复

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Innovative approaches for recovery indium from waste liquid crystal displays (LCDs) has been continuously demanded with increasing concerns over its threat to human health and environment. In this work, we recycled indium from waste LCD panels based on acid leaching procedure (HCl, HClO4 and H3PO4) under microwave and ultrasound-assisted heating system. To optimize the leaching protocol, the method of full factorial experimental design was adopted to explore the influence of different parameters (microwave power, reaction time, acid concentration, and liquid to solid ratio). Results revealed that 100% leaching yield could be achieved as microwave power of 650 W, HCl concentration of 4 M, and liquid: solid ration of 2 within only 142 s. Overall, the leaching effect can be ranked as HCl > H3PO4 > HClO4. To further recovery indium from the acid solution after the microwave leaching by electrorefining, different electrolysis times (2 h, 4 h, 6 h, 8 h, 10 h), voltages (10 V, 15 V, 20 V) and currents (0.1 A, 0.3 A, 0.5 A, 0.7 A, 0.9 A, 1 A, 3 A, 4 A, 5 A) were investigated, the optimal indium recovery yield was accomplished by 93.41% with 1 A and 10 V for 10 h. The metal indium precipitate metalized at the cathode after electrolysis was found to be 99.14% for the purity. In addition, pareto chart analysis of standardized effect and regression mode were employed to testify the optimal leaching condition. This work demonstrates an effective and facile way to recovery indium from wasted LCDs with desirable leaching yield than conventional heating approach.
机译:随着对人类健康和环境的威胁的越来越令,越来越多地要求来自废液晶体显示器(LCD)的创新方法。在这项工作中,我们在微波和超声波辅助加热系统下基于酸浸出程序(HCl,HClO4和H3PO4)的废液晶面板中回收铟。为了优化浸出方案,采用了完整阶乘实验设计的方法来探讨不同参数的影响(微波功率,反应时间,酸浓度和液体与实心比率)。结果表明,100%浸出产量可以实现为650W,HCl浓度为4米的微波功率,液体:22℃内的固体率为2。总体而言,浸出效果可以作为HCl> H3PO4> HClO4排名。通过电动细化,不同的电解时间(2小时,4小时,6小时,8h,10h),电压(10V,15V,20 V)和电流(0.1研究了,0.3a,0.5a,0.7a,0.9a,1a,3a,4a,5a),最佳铟回收率通过93.41%,10 v 10小时完成。在电解后,在阴极处金属铟沉淀物在电解后被发现为纯度为99.14%。此外,采用了标准化效果和回归模式的帕累托图分析来证明最佳的浸出条件。这项工作展示了一种具有比传统的加热方法所需的浸出产量从浪费的LCD恢复铟的有效和容易的方式。

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