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A perturbed hard-sphere-chain equation of state for mixtures: Prediction from critical point constants

机译:混合物的扰动硬球链状态方程:根据临界点常数进行预测

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摘要

A modified perturbed hard-sphere-chain equation of state by Eslami [H. Eslami, Fluid Phase Equilibr. 216 (2004) 21-26], is extended to mixtures. The resulting equation of state for mixtures consists of two temperature-dependent parameters as well as an additional parameter, reflecting the segment size for pure components. The temperature-dependent parameters of the equation of state are correlated as universal functions of the reduced temperature. It is shown that knowing just the critical constants of pure components is sufficient to calculate the temperature-dependent parameters. The equation of state for mixtures is checked against the experimental pressure-volume-temperature data for a large number of mixtures, having varieties of molecular sizes and shapes. It is shown that no interaction parameter is needed to describe the behavior of fluid mixtures. Among about 3500 data points for mixtures, the average absolute deviation, compared to the experimental data, is about 0.93%.
机译:Eslami [H.修正的扰动硬球链状态方程。 Eslami,液相平衡。 216(2004)21-26],扩展到混合物。混合物的状态方程由两个与温度有关的参数以及一个附加参数组成,这些参数反映了纯组分的链段尺寸。状态方程的温度相关参数与降低温度的通用函数相关。结果表明,仅了解纯组分的临界常数就足以计算与温度有关的参数。对照具有多种分子大小和形状的大量混合物的实验压力-体积-温度数据,检查混合物的状态方程。结果表明,不需要相互作用参数来描述流体混合物的行为。在约3500个混合物数据点中,与实验数据相比,平均绝对偏差约为0.93%。

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