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Pressure, isotope, and water co-solvent effects in liquid-liquid equilibria of (ionic liquid plus alcohol) systems

机译:(离子液体加酒精)系统的液-液平衡中的压力,同位素和水助溶剂效应

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摘要

Liquid-liquid phase splitting in ternary mixtures that contain a room-temperature ionic liquid and an alcohol aqueous solution-namely, [bmim] [PF6] + ethanol + water and [bmim] [NTf2] + 2-methylpropanol + water-is studied. Experimental cloud-point temperatures were obtained up to pressures of 400 bar, using a He-Ne laser light-scattering technique. Although pressurization favors mutual miscibility in the presence of high concentrations of alcohols, the contrary occurs in water-rich solutions. Both ternary mixtures exhibit a very pronounced water-alcohol co-solvent effect. Solvent isotope effects are also investigated. Phase diagrams are discussed using a phenomenological approach based on a "polymer-like" G(E) model coupled with the statistical-mechanical theory of isotope effects. The combined effect of a red shift of -15 cm(-1) for the O-H deformation mode of ethanol with a blue shift of +35 cm(-1) for the O-H stretching mode, both of which occurring after liquid infinite dilution in the ionic liquid, rationalizes the observed isotope effect in the phase diagram. Predicted excess enthalpy (H-E) values are inferred from the model parameters. Furthermore, using the Prigogine-Defay equation, an estimation of the excess volumes (V-E) is obtained.
机译:研究了包含室温离子液体和醇水溶液的三元混合物中的液相-液相分离,即[bmim] [PF6] +乙醇+水和[bmim] [NTf2] + 2-甲基丙醇+水。使用He-Ne激光散射技术获得了高达400 bar压力的实验浊点温度。尽管加压有利于在高浓度醇的存在下相互溶混,但在富水溶液中却相反。两种三元混合物均表现出非常明显的水-醇共溶剂效应。还研究了溶剂同位素效应。使用基于“类聚合物” G(E)模型的现象学方法,结合同位素效应的统计力学理论,讨论了相图。乙醇的OH变形模式为-15 cm(-1)的红移与OH拉伸模式为+35 cm(-1)的蓝移的组合效应,两者均在液体中无限稀释后发生离子液体,使相图中的同位素效应合理化。从模型参数推断出预测的过量焓(H-E)值。此外,使用Prigogine-Defay方程,可以估算出多余体积(V-E)。

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