首页> 美国卫生研究院文献>Scientific Reports >Selective and Preferential Separation of Rhodium (III) from Palladium (II) and Platinum (IV) Using a m-Phenylene Diamine-Containing Precipitant
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Selective and Preferential Separation of Rhodium (III) from Palladium (II) and Platinum (IV) Using a m-Phenylene Diamine-Containing Precipitant

机译:使用间苯二胺类沉淀剂选择性和优先分离铑(III)与钯(II)和铂(IV)

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摘要

Although Rh is an industrially important and the most expensive platinum group metal (PGM), the selective and preferential separation of Rh from PGM mixtures still remains as a big challenge. In this work, the separation of Rh (III) from Pd (II) and Pt (IV) in a hydrochloric acid (HCl) solution was studied using a m-phenylene diamine-containing precipitant (m->PDA). At high HCl concentrations (6.0–8.0 M), most of the Rh (III) (>90%) was precipitated, and Pd (II) and Pt (IV) were hardly precipitated (<5%). On the other hand, over 85% of Pd (II) and Pt (IV) precipitated along with small amount of Rh (III) (<25%) at low HCl concentrations (1.0–2.0 M). As a consequence, m->PDA enabled selective and preferential precipitation of Rh (III) at high HCl concentrations. XPS and TG analyses revealed that the Rh-containing precipitate is an ion-pair complex composed of one [RhCl6]3− anion and three m->PDA cations. The Rh desorption from the precipitate as well as the recovery of m->PDA was successfully achieved using an NH4OH solution. This method is a promising practical approach to Rh recovery.
机译:尽管Rh在工业上是重要的并且是最昂贵的铂族金属(PGM),但是从PGM混合物中选择性和优先分离Rh仍然是一个巨大的挑战。在这项工作中,研究了使用含间苯二胺的沉淀剂(m- > PDA 在盐酸(HCl)溶液中将Rh(III)与Pd(II)和Pt(IV)分离的方法。 >)。在高HCl浓度(6.0-8.0µM)下,大部分Rh(III)(> 90%)沉淀,而Pd(II)和Pt(IV)几乎不沉淀(<5%)。另一方面,在低HCl浓度(1.0–2.0 M)下,超过85%的Pd(II)和Pt(IV)以及少量的Rh(III)(<25%)沉淀。结果,m- > PDA 使高HCl浓度的Rh(III)选择性和优先沉淀。 XPS和TG分析表明,含Rh的沉淀物是一种离子对络合物,由一个[RhCl6] 3-阴离子和三个m- > PDA 阳离子组成。使用NH4OH溶液成功实现了Rh从沉淀物中的解吸以及m- > PDA 的回收。该方法是Rh回收的有希望的实用方法。

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