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Asymmetric criticality in weakly compressible liquid mixtures

机译:难压缩液体混合物中的不对称临界

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The thermodynamics of asymmetric liquid-liquid criticality is updated by incorporating pressure effects into the complete-scaling formulation earlier developed for incompressible liquid mixtures C. A. Cerdeirina et al., Chem. Phys. Lett. 424, 414 2006; J. T. Wang et al., Phys. Rev. E 77, 031127 2008. Specifically, we show that pressure mixing enters into weakly compressible liquid mixtures as a consequence of the pressure dependence of the critical parameters. The theory is used to analyze experimental coexistence-curve data in the mole fraction–temperature, density-temperature, and partial density–temperature planes for a large number of binary liquid mixtures. It is shown how the asymmetry coefficients in the scaling fields are related to the difference in molecular volumes of the two liquid components. The work resolves the question of the so-called “best order parameter” discussed in the literature during the past decades.
机译:通过将压力效应纳入先前为不可压缩的液体混合物开发的全比例配方中,可以更新不对称液-液临界温度的热力学。C. A. Cerdeirina等,Chem。物理来吧424,414 2006; J.T. Wang et al。,Phys。 Rev. E 77,0311272008。具体而言,我们表明,由于关键参数对压力的依赖性,压力混合进入了弱可压缩的液体混合物中。该理论用于分析大量二元液体混合物在摩尔分数-温度,密度-温度和部分密度-温度平面上的实验共存曲线数据。它显示了缩放字段中的不对称系数如何与两种液体组分的分子体积差异相关。这项工作解决了过去几十年来文献中讨论的所谓“最佳顺序参数”的问题。

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