作者
Hongbo Zhao, Yisheng Zhang, Xian Zhang, Lu Qian, Menglin Sun, Yu Yang, Yansheng Zhang, Jun Wang, Hyunjung Kim, Guanzhou Qiu
发表日期
2019/6/1
来源
Minerals Engineering
卷号
136
页码范围
140-154
出版商
Pergamon
简介
Chalcopyrite (CuFeS2) is the most abundant copper-containing resource in the earth and is also widely distributed in solid wastes and secondary resources. Biohydrometallurgy (bioleaching) is considered as a promising minerals processing and extractive metallurgy technology because of its environmental and economic advantages over the conventional beneficiation-pyrometallurgy process, and the bioleaching of chalcopyrite is always a challenge because chalcopyrite can be easily passivated in bioleaching. Hence, it is important to understand the dissolution process and passivation mechanism of chalcopyrite in bioleaching. In this paper, the dissolution process and passivation mechanism of chalcopyrite bioleaching have been summarized and discussed according to previous publications. The reported possible passivating species are mainly S-containing species consisting of polysulfide (Sn2−), elemental …
引用总数
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