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Chemistry of Solvent Extraction of Nd(NO3)(3) and Pr(NO3)(3) from Nitrate Solutions with TOMAN-TBP Mixtures in Toluene

机译:从硝酸溶液中溶剂萃取Nd(NO3)(3)和PR(NO3)(3)的化学性质

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摘要

The isomolar series method was used to identify the regions of synergistic extraction of praseodymium and neodymium from low-acid nitrate solutions containing ammonium nitrate as a salting-out agent with isomolar mixtures of tri-n-octyl(methyl)ammonium nitrate and tri-n-butyl phosphate in toluene. The synergistic effect in the praseodymium extraction was detected for a limited range of mixture compositions, while in the case of neodymium extraction, this effect was manifested over the whole range of studied compositions. It was found that the chemistry of synergistic extraction is determined by the formation of a continuous sequence of mixed praseodymium or neodymium complexes, with antiparallel variation of the number of extractant molecules in the complexes and the extractant molar ratio. As the concentration of quaternary ammonium nitrate in the mixture increases, the phosphoryl groups of tri-n-butyl phosphate are replaced by the nitrate ligands of the quaternary salt, up to their complete displacement from the lanthanide coordination sphere.
机译:采用等摩尔级数法确定了从低酸性硝酸盐溶液中协同萃取镨和钕的区域,该溶液含有硝酸铵作为盐析剂,硝酸三辛基(甲基)铵和磷酸三丁酯在甲苯中的等摩尔混合物。镨萃取中的协同效应在有限的混合成分范围内被检测到,而在钕萃取中,这种效应在整个研究成分范围内都表现出来。研究发现,协同萃取的化学性质取决于混合镨或钕络合物连续序列的形成,络合物中萃取剂分子数和萃取剂摩尔比的反平行变化。随着混合物中硝酸季铵浓度的增加,磷酸三丁酯的磷酰基被季盐的硝酸盐配体取代,直到它们完全从镧系配位体中置换出来。

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