Recovery of Cobalt from Copper Converter Slag by Reduction-Sulfurization Smelting at High Temperature

The Minerals, Metals and Materials Society
Shi Sun Hongxu Li Jiaqi Fan Chao Li Qi Liu
Organization:
The Minerals, Metals and Materials Society
Pages:
10
File Size:
3832 KB
Publication Date:
Mar 1, 2017

Abstract

With the great demand of consumer electronics (CE) and electric vehicles (EV), cobalt has become one of the more scarce energy metals.The recovery of cobalt from a copper converter slag, which contained over 2.4% Co and was accumulated as industrial waste, by reduction-sulfurization smelting was explored. Quantitative analysis of treated slag showed that activated carbon and ferrous sulfide can be used to settle cobalt into matte as Co–Fe alloy. The experiment was carried out at 1673 K with a reducing atmosphere of burning electrode graphite crucible. It was found that the recovery of Co would increase within creased added activated carbon, was unaffected at higher carbon additions, and for low additions of carbon increased at higher FeS additions. Over 95% Co, 99% Cu and 62% Fe could be settled into matte. Preliminary separation of Co from converter slag by pyrometallurgical smelting is proposed.
Citation

APA: Shi Sun Hongxu Li Jiaqi Fan Chao Li Qi Liu  (2017)  Recovery of Cobalt from Copper Converter Slag by Reduction-Sulfurization Smelting at High Temperature

MLA: Shi Sun Hongxu Li Jiaqi Fan Chao Li Qi Liu Recovery of Cobalt from Copper Converter Slag by Reduction-Sulfurization Smelting at High Temperature. The Minerals, Metals and Materials Society, 2017.

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