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Third phase formation in the extraction of nitric acid and metal ions by octyl(phenyl)-N,N-diisobutyl carbamoyl methyl phosphine oxide (OOCMPO) based solvents

机译:辛基(苯基)-N,N-二异丁基氨基甲酰基甲基氧化膦(OOCMPO)基溶剂萃取硝酸和金属离子中的第三相形成

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摘要

Formation of a third phase in the extraction of nitric acid and metal ions such as Th(IV), U(VI), La(III), Ce(III), and Gd(III) by OOCMPO based solvents has been investigated under various conditions. The limiting organic concentrations (LOC) and critical aqueous concentrations (CAC) for third phase formation in the extraction of nitric acid by 0.2 M OOCMPO + 1.2 M TBP in n-tetradecane and 0.2 M OOCMPO + 1.2 M TBP in n-hexadecane were measured as a function of temperature. Extraction of nitric acid by these solvents as a function of equilibrium aqueous phase acidity at 303 K has been studied. Distribution of nitric acid between diluent-rich phase (DP) and third phase (TP) in the extraction of nitric acid by these solvents has also been studied as a function of equilibrium aqueous phase acidity at 303 K. Densities of diluent-rich phase, third phase, and aqueous phase have been measured as a function of equilibrium aqueous phase acidity at 303 K. Third phase formation in the extraction of Th(IV), U(VI), La(III), Ce(III), and Gd(III) by OOCMPO modified with tri-n-butyl phosphate (TBP) or tri-n-amyl phosphate (TAP) in various hydrocarbon diluents has also been studied as a function of temperature. Metal loading capacity of some of these solvents has also been studied as a function of equilibrium aqueous phase acidity at 303 K. Results obtained from these studies are presented in this paper.
机译:在各种条件下,已经研究了通过OOCMPO基溶剂萃取硝酸和诸如Th(IV),U(VI),La(III),Ce(III)和Gd(III)等金属离子时第三相的形成。条件。测量了在正十四烷中用0.2 M OOCMPO + 1.2 M TBP和在正十六烷中用0.2 M OOCMPO + 1.2 M TBP萃取硝酸萃取硝酸时形成第三相的极限有机浓度(LOC)和临界水浓度(CAC)。作为温度的函数。已经研究了这些溶剂根据303 K平衡水相酸度提取硝酸的过程。还研究了通过这些溶剂萃取硝酸时硝酸在富稀释剂相(DP)和第三相(TP)之间的分布与在303 K时平衡水相酸度的关系。在303 K下测量了第三相和水相作为平衡水相酸度的函数。Th(IV),U(VI),La(III),Ce(III)和Gd萃取中的第三相形成(III)通过在各种烃稀释剂中用磷酸三正丁酯(TBP)或磷酸三正戊酯(TAP)改性的OOCMPO作为温度的函数进行了研究。还研究了其中某些溶剂在303 K下的平衡水相酸性的金属负载能力。本文介绍了从这些研究中获得的结果。

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