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A new strategy of three-liquid-phase partitioning for stripping of heavy rare earths from the loaded organic phase

机译:从载有机相剥离重稀土的三液相分配的新策略

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The difficulties confronted during the extraction and separation of heavy rare earths (HREs) were low separation factors and high concentration of acid solution consumption. A new strategy for extraction separation and stripping of HREs by phase separation behaviors of the three liquid phases coexisting system consisting of Cyanex272/PEG 2000/(NH4)(2)SO4-H2O was investigated. It was found that the separation factors could be adjusted by phase-forming polymer PEG 2000 and electrolyte salt (NH4)(2)SO4 concentrations, aqueous pH, as well as water-soluble complexing agent DTPA. The stripping of HREs from organic phase and PEG-rich phase were easily achieved via regulation of phase-forming salt concentration instead of utilizing acid solution with high concentration. It was confirmed that the main driving force for transfer of HREs was a special hydrophobic interaction between RE(III)-DTPA complexes and PEG molecular chains occurring on oxygen atoms of C-O-C segments in PEG molecular chains by FTIR spectroscopy and molecular dynamics simulations on the molecular scale. The present work highlights a new understanding for microscopic molecular mechanism of rare earths partitioning into three liquid layers of three-liquid-phase system so as to be stripped from the loaded organic phase.
机译:在重稀土(HRES)提取和分离期间面临的困难是低分离因子和高浓度的酸溶液消耗。研究了由三种液相共存系统的相分离性行为提取分离和汽提的新策略,其三个液相共存系统由CyanEx272 / PEG 2000 /(NH4)(2)SO 4 -H2O组成。发现分离因子可以通过相形成聚合物PEG 2000和电解质盐(NH 4)(2)SO4浓度,水性pH和水溶性络合剂DTPA来调节分离因子。通过调节相结合的盐浓度而不是利用高浓度的酸溶液,容易实现来自有机相和富含富含富苯氏富相的剥离。证实,用于转移HRES的主要驱动力是RE(III)-DTPA复合物和PEG分子链之间的特殊疏水相互作用,并通过FTIR光谱和分子上的分子动力学模拟在PEG分子链中的COC区段的氧原子上发生的氧原子规模。本作本作突出了对三液相体系三液层的稀土分配的微观分子机制的新理解,以便从负载的有机相中剥离。

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