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作 者:曹书勤[1] 司学芝[2] 钟黎[1] 沈久明[1] 马万山[1]
机构地区:[1]信阳师范学院化学化工学院,河南信阳464000 [2]河南工业大学化学化工学院,河南郑州450052
出 处:《冶金分析》2011年第6期77-80,共4页Metallurgical Analysis
基 金:河南省教育厅自然科学研究计划项目(2006150023)
摘 要:研究了四丁基溴化铵-碘化钾-铟(Ⅲ)三元缔合物浮选分离铟的行为及与一些金属离子分离的条件。结果表明,在水溶液中,In(Ⅲ)与四丁基溴化铵和KI形成不溶于水的三元缔合物InI4-.TBAB+,此三元缔合物沉淀浮于盐水相上层形成界面清晰的液-固两相。当溶液pH值为2.0,四丁基溴化铵和KI的浓度分别为6.0×10-4mol/L和5.0×10-3mol/L时,In(可与Fe2+、Al3+、Mn2+、SnⅥ、Ni2+、Zn2+、Cr3+、VⅤ、WⅥ和Co2+定量分离,且In(Ⅲ)的浮选率达到99.1%以上。对合成水样中In(Ⅲ)进行分离和测定,效果良好。该方法不污染环境,在痕量铟的分离和富集分析中有很好的实用价值。The behavior and conditions for the flotation separation of In (Ⅲ) from other metal ions were investigated with tetrabutyl ammonium bromide(TBAB)-potassium iodide-indium(Ⅲ) ternary complex. The results showed that In(Ⅲ) could combin with TBAB and KI into a ternary ion association precipi- tate (InI4 TBAB+) in aqueous solution. The precipitate could float well on the surface of aqueous phase, making the system divide into liquid and solid phases with a distinct interface. In(Ⅲ) could be quantitatively floated and separated from Fe^2+ , Al^3+ , Mn^2+ , Sn(Ⅳ), Ni^2+ , Zn^2+ , Cr^3+ , V(Ⅴ) , W(Ⅵ) and Co^2+ with its floatation rate up to 99.1% when the concentrations of TBAB and KI in solution (pH 2.0) were 6.0X10 4 mol/Land 5.0×10^-3 mol/L, respectively. The proposed method has been applied to the separation and determination of indium (Ⅲ) in synthetic water samples with satisfactory results. This method was environment-friendly, and it showed fine practical value in the separation and enrichment analysis of trace indium.
分 类 号:TF843.1[冶金工程—有色金属冶金]
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