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Solvent extraction of rhodium from bromide media

机译:从溴介质中提取铑的溶剂

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The difficulties associated with the operation of a classical rhodium refining process have prompted many attempts to develop a viable solvent extraction flowsheet for rhodium. Recent investigations at McGill University have involved theactivation of rhodium prior to its solvent extraction. The role of activation is to convert the aquochloro complexes of rhodium to a form extractable by conventional solvent extraction reagents. In the novel separation scheme identified, chloro complexesof rhodium are converted to bromo complexes, which undergo aquation to a lesser extent, making them more easily extracted. Rhodium is then extracted using Kelex 100, and stripping is achieved by use of a concentrated chloride based solution. Separation of rhodium from iridium is achieved by either prior reduction of Ir(IV) to Ir(III), as the latter is not extracted, or via co-extraction and differential stripping. A conceptual flowsheet for the refining of rhodium using this method is proposed.
机译:与经典铑精炼过程的操作相关的困难促使许多尝试为铑开发活性溶剂萃取流量。最近在麦吉尔大学的调查涉及在溶剂提取之前的铑的激活。活化的作用是将铑的水氯络合物转化为可通过常规溶剂萃取试剂萃取的形式。在鉴定的新型分离方案中,铑络合物转化为溴络合物,该络合物在较小程度上进行水中,使其更容易提取。然后使用Kelex 100提取铑,通过使用基于浓缩的氯化物溶液来实现汽提。通过在未提取后者的IR(IV)至IR(III)的原先降低,或者通过共引出和差动剥离来实现虹膜的铑的分离。提出了使用这种方法精炼铑的概念流程。

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