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转炉渣富钴镍浸出液镍钴分离工艺研究
引用本文:王玉华,朱纪念,刘同银.转炉渣富钴镍浸出液镍钴分离工艺研究[J].有色金属(冶炼部分),2013(4):17-19.
作者姓名:王玉华  朱纪念  刘同银
作者单位:金川集团公司镍钴研究设计院,甘肃金昌,737100
摘    要:以某厂镍电解生产净化工序氯气除钴产生的钴渣为氧化剂,除去转炉渣浸出液电积脱铜后液中的钴,实现转炉渣富钴镍浸出液中镍钴分离。结果表明,在钴渣含三价镍与钴量摩尔比为4~5,反应温度70~80℃,反应时间120min,终点pH 4.8~5的条件下,分离富集钴后的二次钴渣镍钴比可降为1~1.5,可用于生产钴产品。除钴后液可直接并入镍电解系统。

关 键 词:镍电解  氯气除钴、钴渣  镍钴分离
收稿时间:9/12/2012 7:24:28 AM
修稿时间:9/12/2012 7:24:28 AM

Process Study on Separation of Nickel and Cobalt in Converter Slag Lixivium
wangyuhu,zhujinian and liutongyin.Process Study on Separation of Nickel and Cobalt in Converter Slag Lixivium[J].Nonferrous Metals(Extractive Metallurgy),2013(4):17-19.
Authors:wangyuhu  zhujinian and liutongyin
Affiliation:Jinchuan nickel and cobalt research and Engineering Institute,,
Abstract:In order to separate cobalt from cobalt-rich nickel leaching solution of converter slag,cobalt slag produced from nickel electrolysis purification process of cobalt removing with chlorine was applied as oxidizing agent to remove the cobalt from copper removal solution of converter slag lixivium.The results show that mole ratio of nickel and cobalt in secondary cobalt slag is decreased to 1~1.5 under the following conditions including original mole ratio of nickel and cobalt in cobalt slag of 4~5,reaction temperature of 70~80 ℃,reaction time of 120 min,and pH value of endpoint of 4.8~5.The secondary cobalt slag is used as the raw materials of cobalt product,and cobalt removal solution is returned to nickel electrolysis system.
Keywords:nickel electrolysis  cobalt chloration removing  cobalt slag  separation of nickel and cobalt
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