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首页> 外文期刊>The Journal of Supercritical Fluids >Fluid-phase equilibria in binary systems containing an ionic liquid. Application of the Percus-Yevick-van der Waals equation of state
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Fluid-phase equilibria in binary systems containing an ionic liquid. Application of the Percus-Yevick-van der Waals equation of state

机译:包含离子液体的二元系统中的液相平衡。 Percus-Yevick-van der Waals状态方程的应用

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摘要

Following some simplifications to reduce the computational effort, the Percus-Yevick-van der Waals equation of state is used to calculate the isothermal total pressure of a binary liquid system containing one volatile nonelectrolyte liquid and one nonvolatile ionic liquid. Pure-component parameters a and b are found from pure-component enthalpy-of-vaporization and liquid-density data. The single binary parameter a_(12) is obtained from Henry's constant for the nonelectrolyte in the ionic liquid. For 10 binary systems, calculated total pressures are in good agreement with experiment although in a few systems observed total pressures are slightly higher than those calculated in the region where the ionic liquid is dilute. Brief attention is given to a few binary systems with a miscibility gap.
机译:经过一些简化以减少计算量之后,使用Percus-Yevick-van der Waals状态方程来计算包含一种挥发性非电解质液体和一种非挥发性离子液体的二元液体系统的等温总压。从纯组分的蒸发焓和液体密度数据可以找到纯组分的参数a和b。单个二进制参数a_(12)是从离子液体中非电解质的亨利常数获得的。对于10个二元系统,尽管在某些系统中观察到的总压力略高于在离子液体稀化区域中计算出的总压力,但计算出的总压力与实验结果非常吻合。简要注意了一些具有互溶性缺口的二进制系统。

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