用4-烷基苯胺浸渍树脂从盐酸溶液中回收铑(III

Kazuya Matsumoto, S. Ohno, Yukinori Hata, Yuto Sezaki, M. Jikei
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引用次数: 0

摘要

采用疏水多孔树脂浸泡在盐酸4-丁苯胺水溶液中制备4-丁苯胺浸渍树脂(BuIRs)。从10 ppm Rh(III)溶液(6 M HCl)中成功吸附了Rh(III)。用甲醇索氏萃取法定量解吸了含有盐酸4-丁苯胺的bir中的Rh(III)。含Rh(III)溶液的紫外-可见吸收测量表明,Rh(III)基物质在HCl溶液中的平衡转移缓慢,加热溶液对平衡是有效的。本研究获得的buir从低Rh(III)浓度溶液中有效地回收了Rh(III)氯络合物阴离子([RhCl 6] 3−),可用于Rh(III)的回收过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rhodium(III) Recovery from HCl Solutions Using 4-Alkylaniline-Impregnated Resins
and Pt(IV) standard solutions were In this study, 4-butylaniline-impregnated resins (BuIRs) were prepared by soaking hydrophobic porous resins in aqueous solutions of 4-butylaniline hydrochloride. Rh(III) was successfully adsorbed by BuIRs from 10 ppm Rh(III) solutions (6 M HCl). The quantitative desorption of Rh(III) accompanied with 4-butylaniline hydrochloride from BuIRs was also achieved by Soxhlet extraction using methanol. UV-Vis absorption measurements of Rh(III)-containing solutions showed that the equilibrium shift of Rh(III)-based species in HCl solutions is slow, and heating of the solutions is effective for equilibrating. The BuIRs obtained in this study effectively recovered the Rh(III) chloro-complex anion ([RhCl 6 ] 3 − ) from low Rh(III) concentration solutions, and can be useful in the Rh(III) recovery process.
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