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Fluctuational parameters based on the Bhatia-Thornton theory for supercritical solutions: Application to a supercritical aqueous solution of n-pentane

机译:基于Bhatia-Thornton超临界解决方案理论的波动参数:应用于正戊烷的超临界水溶液

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摘要

To study the structural fluctuation of supercritical solutions, we introduced three fluctuational parameters, a scattering factor, a density factor and a volume factor, which were based on the Bhatia-Thornton theory. In the present study, the density dependence of the structural inhomogeneity in a supercritical aqueous solution of n-pentane was discussed using the scattering factor and the density factor obtained from small-angle X-ray scattering and the fluid density measurements, respectively. Although both these factors have their maxima at the same density position in the case of neat supercritical fluids, a significant difference between the two factors is observed in the binary solution. The large difference occurs by the contribution of the concentration fluctuation in the system. Based on the difference between the factors, it is suggested that a phase separation of the system exists in the higher-fluid-density region. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了研究超临界解决方案的结构波动,我们介绍了三个波动参数,散射因子,密度因子和体积因子,这是基于Bhatia-Thornton理论的。 在本研究中,使用散射因子和从小角X射线散射和流体密度测量获得的散射因子和密度因子分别讨论了在正临临临临临临时水溶液中的结构不均匀性的密度依赖性。 尽管在纯粹的超临界流体的情况下,两个因素在相同的密度位置具有它们的最大值,但在二元溶液中观察到两个因子之间的显着差异。 通过系统中的浓度波动的贡献发生了很大的差异。 基于因素之间的差异,建议系统的相分离存在于更高流体密度区域中。 (c)2017 Elsevier B.v.保留所有权利。

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