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Recovery of high purity copper cathode from printed circuit boar using ammoniacal sulfate or chloride solutions

机译:使用氨水硫酸盐或氯化物溶液从印刷电路板中回收高纯度铜阴极

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The behavior of impurity elements during a copper recovery process from waste printed circuit board (PCB) using ammoia-ammonium sulfate and chloride systems are examined and the performance of these two systems are compared. Leaching of PCB was carried out by solutions containing copper(II) ammine complexes as the oxidizing agent. The copper was selectively dissolved but the leach solution also contained zinc (approx 1 g/L), lead and manganese (approx 0.1 g/L), in addition to 40-50 g/L copper. The solution was then purified by solvent extraction using LIX 26 (alkyl substituted 8-hydroxy-quinoline) which typically extracted >95 percent of the impurity elements with a few exceptions. The selectivity in the leaching and purification steps was higher in the sulfate system than that in the chloride system. Finally, copper was recovered from the solution by electro-deposition with a low power consumption of 1300 and 500 kWh/tonne in the sulfate and chloride systems, respectively. The results of glow discharge mass spectrometry of the electro-deposited copper revealed that the electro-deposited copper contained 24 and 1.1 ppm of impurities in the sulfate and chloride systems, respectively, with lead as the main impurity element in both systems. Because the purity of the copper deposit from the chloride system was high, this copper scrap recycling process has the potential to recover high purity copper from wastes with a low power consumption.
机译:在使用氨-硫酸铵和氯化物系统从废印刷电路板(PCB)回收铜的过程中,检查了杂质元素的行为,并比较了这两种系统的性能。多氯联苯的浸出是通过以氨基铜(II)络合物为氧化剂的溶液进行的。选择性地溶解了铜,但是浸提溶液中除了40-50 g / L的铜以外,还包含锌(约1 g / L),铅和锰(约0.1 g / L)。然后使用LIX 26(烷基取代的8-羟基喹啉)通过溶剂萃取将溶液纯化,除少数情况外,通常萃取> 95%的杂质元素。在硫酸盐体系中,浸出和纯化步骤的选择性高于在氯化物体系中。最后,在硫酸盐和氯化物系统中,通过电沉积分别以1300和500 kWh / t的低功耗从溶液中回收铜。电沉积铜的辉光放电质谱分析的结果表明,电沉积铜在硫酸盐和氯化物系统中分别包含24和1.1 ppm的杂质,在这两个系统中铅都是主要的杂质元素。因为来自氯化物系统的铜沉积物的纯度很高,所以这种废铜回收过程具有以低功耗从废物中回收高纯度铜的潜力。

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