用废锌碳电池中的二氧化锰电浸废印刷电路板中的铜

H. Nakazawa, Naofumi Hayashi, Wataru Hareyama
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引用次数: 1

摘要

废弃的锌碳电池和碱性电池含有二氧化锰,但在日本,它们被埋在垃圾填埋场,没有得到回收利用。二氧化锰比金属铜更高贵。两种材料之间的接触引起电相互作用,二氧化锰作为阴极被还原,而铜作为阳极被氧化。我们研究了用从废锌碳电池中回收的二氧化锰从粉碎的印刷电路板中电浸出铜。在pH为1.0的硫酸溶液中,二氧化锰的存在促进了铜的溶解。在有二氧化锰存在的情况下,8小时铜的浸出率为90%,无二氧化锰存在的情况下铜的浸出率为16%。考察了pH、二氧化锰用量、温度等因素对铜浸出的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Galvanic Leaching of Copper in Waste Printed Circuit Boards Using Manganese Dioxide in Spent Zinc-Carbon Batteries
Spent zinc-carbon batteries and alkaline batteries contain manganese dioxide, but they are bur- ied in landfill sites without being recycled in Japan. Manganese dioxide is nobler than metal copper. The contact between both materials causes galvanic interactions, and manganese dioxide acts cath- ode to be reduced while copper reacts as anode to be oxidized. We have investigated the galvanic leaching of copper in shredded printed circuit boards using manganese dioxide recovered from spent zinc-carbon batteries. The dissolution of copper was enhanced in the presence of manganese dioxide in sulfuric acid solution with pH 1.0. The extraction yield of copper was 90% in the presence of manganese dioxide in 8 hour leaching while 16% of copper dissolved in the absence. Effects of fac-tors such as pH, amount of manganese dioxide and temperature on the leaching of copper were also examined.
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