Galvanic Leaching of Chalcopyrite Using Manganese Oxides in Spent Zinc-Carbon Batteries

H. Nakazawa, Wataru Hareyama
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引用次数: 6

Abstract

It is well known that galvanic interaction between sulfide minerals and manganese oxides in manganese nodules accelerates the leaching of sulfide minerals. Zinc-carbon batteries contain a moist paste (hereafter, black paste) of manganese oxides and graphite powder as cathode mix. We have investigated the feasibility of galvanic leaching of chalcopyrite using chemical reagent MnO 2 and black paste. Addition of MnO 2 enhanced the leaching of chalcopyrite in sulfuric acid media with pH 1.0 and Mn concentration also increased remarkably. Extraction yields of Cu and Mn were 52% and 23% respectively at a MnO 2 to chalcopyrite mass ratio of 4 in 24 days. In the presence of black paste the kinetics of chalcopyrite leaching was accelerated dramatically and 83% of Cu in the concentrate was extracted in 40 hours. The graphite powder contained in black paste could play an important role in the galvanic leaching of chalcopyrite in the presence of MnO 2 .
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废锌碳电池中锰氧化物电浸黄铜矿研究
众所周知,锰结核中硫化物矿物与锰氧化物之间的电相互作用加速了硫化物矿物的浸出。锌碳电池含有锰氧化物和石墨粉的湿糊状物(以下简称黑糊状物)作为阴极混合物。研究了用化学试剂mno2和黑色膏体电浸黄铜矿的可行性。在pH为1.0的硫酸介质中,添加mno2促进了黄铜矿的浸出,Mn浓度也显著提高。在mno2与黄铜矿质量比为4的条件下,24 d内Cu和Mn的提取率分别为52%和23%。在黑膏体存在的情况下,黄铜矿浸出动力学显著加快,精矿中铜在40 h内浸出率达到83%。黑色膏体中含有的石墨粉在氧化锰存在下的电浸黄铜矿过程中起重要作用。
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