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首页> 外文期刊>Journal of Molecular Liquids >Application of the data on dielectric constant and viscosity of binary mixtures to the selection of synergistic solvent extraction-binary mixtures of Cyanex and tertiary amine (TEHA)
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Application of the data on dielectric constant and viscosity of binary mixtures to the selection of synergistic solvent extraction-binary mixtures of Cyanex and tertiary amine (TEHA)

机译:将数据应用于二元混合物介电常数和粘度的选择,以选择Cyanex和第三胺(Teha)的协同溶剂萃取 - 二元混合物选择

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摘要

The binary mixtures of Cyanex compounds and tertiary amine have been employed for the synergistic solvent extraction of metal ions. Viscosities and dielectric constants of the binary mixtures consisting of Cyanex compounds (Cyanex 301, Cyanex 272, Cyanex 921 and Cyanex 923) and tertiary amine (TEHA) were measured at 293 K. The interaction between the constituents in the binary mixture was interpreted by analyzing the deviation values and Grunberg-Nissan interaction parameters (d) of viscosity and dielectric constant. Among the binary mixtures employed in this work, the mixture of Cyanex 301 and TEHA showed the strongest interaction (the maximum magnitude of deviations of viscosity and dielectric constant for this mixture was 3.30 mPa.s and 157.55), which was in good agreement with the FT-IR data. The necessary parameters for Redlich-Kister equation were successfully estimated from measured values of the deviation of the viscosity and dielectric constant of the mixture of Cyanex 301 and TEHA. Our results indicated that excess properties and Grunberg-Nissan interaction constant of a binary mixture might provide some information on the nature of the intermolecular interactions in the binary mixture and on the selection of an appropriate mixture for the solvent extraction of metal ions. (C) 2019 Elsevier B.V. All rights reserved.
机译:已经使用氰化物化合物和叔胺的二元混合物用于金属离子的协同溶剂萃取。在293k下测量由氰化物化合物组成的二元混合物(Cyanex 301,Cyanex 272,Cyanex 921和Cyanex 923)和叔胺(Teha)组成的二元混合物的粘度和介电常数。通过分析解释二元混合物中的成分之间的相互作用粘度和介电常数的偏差值和Grunberg-Nissan相互作用参数(d)。在该工作中使用的二元混合物中,Cyanex 301和Teha的混合物显示出最强的相互作用(该混合物的粘度和介电常数的最大偏差为3.30mPa.s和157.55),这与该混合物是良好的一致FT-IR数据。从Cyanex 301和Teha的混合物的粘度和介电常数的偏差的测量值成功地估计了Redlich-Kister方程的必要参数。我们的结果表明二元混合物的过量性质和Grunberg-Nissan相互作用常数可以提供有关二元混合物中分子间相互作用的性质的一些信息,以及在选择金属离子的溶剂萃取的适当混合物中。 (c)2019 Elsevier B.v.保留所有权利。

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