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Hydrometallurgical metal recovery from waste printed circuit boards pretreated by microwave pyrolysis

机译:通过微波热解的废印刷电路板中湿法冶金金属回收

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Waste printed circuit boards (PCBs) were pretreated by either microwave or conventional pyrolysis prior to acid leaching processes. Microwave pyrolysis can provide higher weight loss of waste PCBs and better metal recycling than conventional pyrolysis. After microwave and conventional pyrolysis of waste PCBs, the overall copper recovery rates of two-stage acid leaching can be up to approximately 96 and 75%, respectively. The gold recovery rates of thiourea leaching from microwave- and conventional-pyrolyzed PCBs were approximately 80 and 69%, respectively. Therefore, size-reduction processes for the pretreatment of waste PCBs would not be necessary, as long as microwave pyrolysis is applied prior to hydrometallurgical processes. The gold recovery rates of this study should be credible, since the sum of recovery and non-recovery rates was close to 100%. The initial acid leaching of copper may be governed by the copper content in the PCBs as well as the concentration of oxidizing agent in the leaching solution. Besides, the reaction rate of thiourea leaching of microwave-pyrolyzed PCBs may be largely influenced by the thickness of product layer. Both acid and thiourea leaching experimental results were better fitted by the pseudo-second-order reaction model. However, the maximum recovery rate determined by using the pseudo-first-order reaction model should be more reasonable.
机译:在酸浸出过程之前,通过微波或常规热解预处理废物印刷电路板(PCB)。微波热解可以提供比常规热解的废旧PCB和更好的金属回收率较高。微波和常规热解的废PCB后,两级酸浸出的总铜回收率分别可分别为约96%和75%。从微波和常规热解的PCB浸出的硫脲的金回收率分别为80%和69%。因此,对于在液压冶金方法之前施加微波热解,不需要用于预处理废物PCB的预处理的尺寸减少方法。本研究的黄金回收率应可信,因为恢复和非恢复率的总和接近100%。铜的初始酸浸出可以通过PCB中的铜含量以及浸出溶液中的氧化剂的浓度来控制。此外,微波 - 热解的PCB的硫脲浸出的反应速率可能主要受产品层厚度的影响。酸和硫脲浸出实验结果更好地由伪二阶反应模型装配。然而,通过使用伪第一阶反应模型确定的最大回收率应该更合理。

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