doi:103969∕jissn1007G7545202403006收稿日期:2023G10G26基金项目:自然资源部离子型稀土资源与环境重点实验室开放基金资助项目(2022IRERE204;江西钨业控股集团有限公司科技计划项目(JXTCG23AG05)作者简介:徐沙(1997G),女,硕士,助理工程师;通信作者:张志峰(1978G),男,博士,副研究员CLGCyanex272萃取色层法深度净化钴溶液徐沙,张志峰,李奉真,伍莺,李忠岐(赣州有色冶金研究所有限公司,江西赣州341000)摘要:以苯乙烯为单体,二乙烯苯为交联剂,Cyanex272为萃取剂,采用乳液悬浮聚合法制备CLGCyanex272萃淋树脂.采用静态吸附法探究了Co浓度、温度、pH、皂化度、时间等因素对CLGCyanex272萃淋树脂吸附Co、Ni、Mg的影响;采用萃取色层法探究了连续动态过程中萃淋树脂对含Co溶液净化的影响.结果表明:当料液pH=6、皂化度为100%时,CLGCyanex272萃淋树脂对Co的吸附量达214mg∕g;控制皂化度≥70%、料液pH≥5时,Co与Ni、Co与Mg的分离效果较好,其分离系数分别达到1697和18;动态吸附试验中CLGCyanex272萃淋树脂可将料液中Co的浓度从8015%提纯到999996%.本研究为CLGCyanex272萃淋树脂用于工业纯化Co溶液提供良好的依据.关键词:CLGCyanex272;萃淋树脂;萃取色层法;Co;吸附;高纯化中图分类号:TF816文献标志码:A文章编号:1007G7545(2024)03G0041G09DeepPurificationofCobaltSolutionbyExtractionChromatographyMethodwithCLGCyanex272XUSha,ZHANGZhifeng,LIFengzhen,WUYing,LIZhongqi(GanzhouNonferrousMetallurgyResearchInstituteCo,Ltd,Ganzhou341000,Jiangxi,China)Abstract:CLGCyanex272extractionresinwaspreparedbyemulsionsuspensionpolymerizationwithstyreneasmonomer,divinylbenzeneascrossGlinkingagent,andCyanex272asextractantTheeffectsofCoconcentration,temperature,pHvalue,saponificationdegreeandtimeontheadsorptionofCo,NiandMgbyCLGCyanex272wereinvestigatedbystaticadsorptionmethodTheeffectofCLGCyanex272onpurificationofCocontainingsolutionincontinuousdynamicprocesswasinvestigatedbyextractivechromatographymethodTheresultsshowthattheadsorptioncapacityofCobyCLGCyanex272is214mg∕gatpH=6andsaponi...