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Concentration of precious metals from waste printed circuit boards using supergravity separation

机译:使用超重力分离法从废印刷电路板中浓缩贵金属

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摘要

Printed circuit boards (PCBs) comprise valuable metals, precious metals, and hazardous materials. Thus, they are considered both attractive secondary sources of metals and environmental pollutants. This study is based on the selective separation of Pb-Sn, Sn-Cu, and Cu-Zn alloys, where supergravity separation was used to concentrate precious metals (i.e., Ag, Au, and Pd) from PCBs in Cu-Zn alloy and final residue. The temperature and gravity coefficient were found to have great influence on the concentration of precious metals in said alloy and residue. At the optimized temperature of 1300 °C, gravity coefficient of 1000, and separation time of 5 min, the Ag, Au, and Pd contents in the Cu-Zn alloy increased by 1.65, 2.05, and 1.54 times, respectively, compared to their concentrations in the original PCBs, while those in the final residue increased by 0.63, 1.02, and 2.62 times, respectively. By combining an appropriate hydrometallurgical process with the present supergravity separation and concentration of precious metals, this clean and efficient process provides a new pathway to recycle valuable metals and prevent environmental pollution by PCBs.
机译:印刷电路板(PCB)包含贵金属,贵金属和有害材料。因此,它们被认为是有吸引力的次要金属来源和环境污染物。这项研究基于Pb-Sn,Sn-Cu和Cu-Zn合金的选择性分离,其中超重力分离用于从Cu-Zn合金中的PCB中浓缩贵金属(例如Ag,Au和Pd)。最终残留物。发现温度和重力系数对所述合金和残余物中贵金属的浓度有很大的影响。在1300 C的最佳温度,1000的重力系数和5 min的分离时间下,Cu-Zn合金中的Ag,Au和Pd含量分别比其高1.65倍,2.05倍和1.54倍。原始PCB中的浓度分别增加了0.63、1.02和2.62倍。通过将适当的湿法冶金工艺与当前的超重力分离和贵金属浓缩相结合,这种清洁而高效的工艺提供了一条回收贵重金属并防止PCB污染环境的新途径。

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