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首页> 外文期刊>Journal of Material Cycles and Waste Managemen >Ammoniacal leaching and recovery of copper from alloyed low-grade e-waste
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Ammoniacal leaching and recovery of copper from alloyed low-grade e-waste

机译:氨从合金低品位电子废物中浸出和回收铜

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摘要

The paper concerns a hydrometallurgical method for selective recovery of copper from low-grade electric and electronic wastes. The following consecutive stages were proposed: smelting of the scraps to produce Cu-Zn-Ag alloy, leaching of the alloy in ammoniacal solution, and selective copper electrowinning. Cu-Zn-Ag alloy was a polymetallic and five-phase system. It was leached in chloride, carbonate, sulfate and thiosulfate solutions. This resulted in the separation of the metals, wherein metallic tin and silver as well as lead salts remained in the slimes, while copper and zinc were transferred to the electrolyte. Copper was selectively recovered from the ammoniacal solutions by the electrolysis, leaving zinc ions in the electrolyte. The best conditions of the alloy treatment were obtained in the ammonia-carbonate system, where the final product was copper of high purity (99.9 %) at the current efficiency of 60 %. Thiosulfate solution was not applicable for the leaching of the copper alloy due to secondary reactions of the formation of copper(I) thiosulfate complexes and precipitation of copper(I) sulfide, both inhibiting dissolution of the metallic material.
机译:本文涉及一种湿法冶金方法,用于从低级电气和电子废物中选择性回收铜。提出了以下连续步骤:冶炼废料以生产Cu-Zn-Ag合金;在氨溶液中浸出合金;以及选择性铜电解沉积。 Cu-Zn-Ag合金是多金属五相体系。将其浸入氯化物,碳酸盐,硫酸盐和硫代硫酸盐溶液中。这导致金属分离,其中金属锡和银以及铅盐保留在煤泥中,而铜和锌则转移到电解质中。通过电解从氨溶液中选择性地回收铜,从而在电解质中留下锌离子。在氨-碳酸盐体系中可获得合金处理的最佳条件,其中最终产品为高纯度(99.9%)的铜,电流效率为60%。硫代硫酸盐溶液不适用于铜合金的浸出,因为硫代硫酸铜(I)配合物的形成和硫化铜(I)的沉淀会发生二次反应,均会抑制金属材料的溶解。

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