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Deep cleaning of a metallurgical zinc leaching residue and recovery of valuable metals
作者姓名:Peng Xing  Bao-zhong Ma  Peng Zeng  Cheng-yan Wang  Ling Wang  Yong-lu Zhang  Yong-qiang Chen  Shuo Wang  Qiu-yin Wang
作者单位:School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China
基金项目:This work was financially supported by the National Natural Science Foundation of China,the Fundamental Research Funds for the Central Universities,the Yunnan Technical Innovation and Personnel Training Program
摘    要:Huge quantities of zinc leaching residues (ZLRs) generated from zinc production are dumped continuously around the world and pose a potential environmental threat because of their considerable amounts of entrained heavy metals (mainly lead). Most ZLRs have not been properly treated and the valuable metals in them have not yet been effectively recovered. Herein, the deep cleaning of a ZLR and recovery of valuable metals via a hydrometallurgical route were investigated. The cleaning process consists of two essential stages:acid leaching followed by calcium chloride leaching. The optimum conditions for extracting zinc, copper, and indium by acid leaching were a sulfuric acid concentration of 200 g·L-1, a liquid/solid ratio of 4:1 (mL/g), a leaching time of 2 h, and a temperature of 90℃. For lead and silver extractions, the optimum conditions were a calcium chloride concentration of 400 g·L-1, a pH value of 1.0, a leaching time of 1 h, and a temperature of 30℃. After calcium chloride leaching, silver and lead were extracted out and the lead was finally recovered as electrolytic lead by electrowinning. The anglesite phase, which poses the greatest potential environmental hazard, was removed from the ZLR after deep cleaning, thus reducing the cost of environmental management of ZLRs. The treatment of chlorine and spent electrolyte generated in the process was discussed.

关 键 词:deep  cleaning    zinc  leaching  residue    zinc    lead    leaching    electrowinning

Deep cleaning of a metallurgical zinc leaching residue and recovery of valuable metals
Peng Xing,Bao-zhong Ma,Peng Zeng,Cheng-yan Wang,Ling Wang,Yong-lu Zhang,Yong-qiang Chen,Shuo Wang,Qiu-yin Wang.Deep cleaning of a metallurgical zinc leaching residue and recovery of valuable metals[J].International Journal of Minerals,Metallurgy and Materials,2017,24(11):1217-1227.
Authors:Peng Xing  Bao-zhong Ma  Peng Zeng  Cheng-yan Wang  Ling Wang  Yong-lu Zhang  Yong-qiang Chen  Shuo Wang  Qiu-yin Wang
Institution:1. School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China;2. School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China;Yunnan Yuntong Zinc Co.Ltd., Kunming 650051, China;3. Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, China;4. Yunnan Yuntong Zinc Co.Ltd., Kunming 650051, China
Abstract:Huge quantities of zinc leaching residues (ZLRs) generated from zinc production are dumped continuously around the world and pose a potential environmental threat because of their considerable amounts of entrained heavy metals (mainly lead).Most ZLRs have not been properly treated and the valuable metals in them have not yet been effectively recovered.Herein,the deep cleaning of a ZLR and recovery of valuable metals via a hydrometallurgical route were investigated.The cleaning process consists of two essential stages:acid leaching followed by calcium chloride leaching.The optimum conditions for extracting zinc,copper,and indium by acid leaching were a sulfuric acid concentration of 200 g·L-1,a liquid/solid ratio of 4:1 (mL/g),a leaching time of 2 h,and a temperature of 90℃.For lead and silver extractions,the optimum conditions were a calcium chloride concentration of 400 g·L-1,a pH value of 1.0,a leaching time of 1 h,and a temperature of 30℃.After calcium chloride leaching,silver and lead were extracted out and the lead was finally recovered as electrolytic lead by electrowinning.The anglesite phase,which poses the greatest potential environmental hazard,was removed from the ZLR after deep cleaning,thus reducing the cost of environmental management of ZLRs.The treatment of chlorine and spent electrolyte generated in the process was discussed.
Keywords:deep cleaning  zinc leaching residue  zinc  lead  leaching  electrowinning
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