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Continuous ion exchange for hydrometallurgy: Purification of Ag(I)-NaCl from divalent metals with aminomethylphosphonic resin using counter-current and cross-current operation

机译:湿法冶金的连续离子交换:使用逆流和错流操作,用氨基甲基膦酸酯树脂从二价金属中纯化Ag(I)-NaCl

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Continuous simulated moving bed (SMB) type ion exchange processes are usually operated in cross-current mode for metal separations whereas counter-current mode is commonly used for fine chemicals. The use of both process types was investigated for hydrometallurgical purification of Ag-NaCl solution from divalent impurity metals (Ca, Mg, Pb, Zn). An amphoteric aminomethylphosphonic functional ion exchange resin (Lewatit TP-260) was used as stationary phase. Also the influence of controlled partial neutralization of the resin on process performance was investigated. Successful separation was obtained with both counter-current and cross-current configurations. Ag product was collected in over 99% purity with practically 100% yield. All of the impurity metals were collected at the extract, and none of them migrated to the controlled partial neutralization zone. Column efficiency and the liquid to solid flow rate ratio were found to have strong influences on process performance. It was thus shown that counter-current simulated moving-bed process can be utilized for purification of precious metal solutions, especially when high yield is important. Remarkably improved performance is obtained by implementing a controlled partial neutralization procedure as an additional step within the continuous ion exchange unit.
机译:连续模拟移动床(SMB)型离子交换工艺通常在错流模式下进行金属分离,而逆流模式通常用于精细化学品。研究了两种工艺类型的使用,以从二价杂质金属(Ca,Mg,Pb,Zn)中湿法冶金纯化Ag-NaCl溶液。使用两性氨基甲基膦官能离子交换树脂(Lewatit TP-260)作为固定相。还研究了树脂的部分中和对工艺性能的影响。使用逆流和交叉电流配置均可成功分离。收集到的银产品纯度超过99%,收率实际上为100%。所有杂质金属均在提取物中收集,并且没有一个迁移到受控的部分中和区。发现色谱柱效率和液固比对工艺性能有很大影响。因此表明,逆流模拟移动床工艺可用于纯化贵金属溶液,特别是在高收率很重要的情况下。通过在连续离子交换单元内执行受控的部分中和过程作为附加步骤,可以显着提高性能。

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