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Copper and Antimony Recovery from Electronic Waste by Hydrometallurgical and Electrochemical Techniques

机译:通过液压冶金和电化学技术从电子废物中恢复铜和锑

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A strategy for the efficient recovery of highly pure copper and antimony metals from electronic waste (e-waste) was implemented by the combination of hydrometallurgical and electrochemical processes. The focus is on copper recovery as the main component in the leached solution, whereas the antimony recovery process was established as a purification step in order to achieve a highly pure copper deposit. The strategy includes mechanical methods to reduce the size of the wasted printed circuit boards to enhance the efficiency of antimony and copper lixiviation via ferric chloride in acidic media (0.5 M HCl) followed by an electrowinning process. In order to establish the best parameters for copper electrowinning, the leached solution was characterized by cyclic voltammetry and cathodic polarization. Then, an electrochemical reactor with a rotating cylinder electrode was used to evaluate the copper concentration decay, the cathodic current efficiency, the specific energy consumption, and mass-transfer coefficient. Furthermore, antimony was recovered via precipitation by a pH modification in accordance with the Pourbaix diagram. Under this methodology, two valuable products from the e-waste were recovered: a 96 wt % pure copper deposit and 81 wt % pure antimony precipitate. The strategy for recovery of other metal ions, such as lead, present in the e-waste at high concentrations will be reported in further works.
机译:通过液压冶金和电化学方法的组合实现了从电子废物(电子废物)的高纯铜和锑金属的有效回收策略。重点是铜回收作为浸出溶液中的主要成分,而锑回收过程是作为纯化步骤的,以实现高纯铜沉积物。该策略包括减小浪费的印刷电路板的尺寸的机械方法,以通过酸性介质(0.5M HCl)中的氯化铁,然后是电烙膦方法来增强锑和铜浸渍的效率。为了建立铜电催化的最佳参数,通过循环伏安法和阴极极化表征浸出的溶液。然后,使用具有旋转圆筒电极的电化学反应器来评估铜浓度衰减,阴极电流效率,特定能量消耗和传质系数。此外,根据pourbaix图,通过pH改性通过沉淀回收锑。在该方法下,回收了来自电子废物的两种有价值的产品:96wt%纯铜沉积物和81wt%纯锑沉淀物。将报告在高浓度下存在于高浓度下的其他金属离子的策略,例如在高浓度下存在的铅。

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