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Application of a Crossover Equation of State to Describe Phase Equilibrium and Critical Properties of n-Alkanes and Methane/n-Alkane Mixtures

机译:施用状态的交叉方程描述正烷烃和甲烷/正烷烃混合物的相平衡和关键性质

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摘要

Crossover equations of state (EOSs) are models that incorporate density fluctuations into mean-field thermodynamic models, changing their behavior close to the critical point. In this way, they are capable of describing the analytical behavior of fluids far from the critical region and the asymptotic one near the critical point. Although several crossover EOSs have been developed in the last decades their use in modeling industrial processes is rather limited. In this work, we use the crossover Soave–Redlich–Kwong (CSRK) to describe phase equilibrium and critical properties of pure n-alkanes and methane/n-alkane binary mixtures and compare the results to two other modeling approaches of the SRK EOS. In the case of the pure fluids, CSRK gives an accurate overall description of the phase equilibrium and critical properties; nevertheless, a minor increase in the deviation of the saturation pressure and other properties is observed when compared to that of the mean-field model. For the binary mixtures, an improvement in the description of the critical volumes is seen, while, for the other properties, similar results are obtained.
机译:状态(eoss)的交叉方程是将密度波动的模型与平均场热力学模型结合在一起,改变其接近临界点的行为。以这种方式,它们能够描述远离临界区域的流体的分析行为和临界点附近的渐近体。虽然在过去几十年中已经开发了几个交叉eoss,但它们在建模工业过程中的使用相当有限。在这项工作中,我们使用跨越Soave-Redlich-Kwong(CSRK)来描述纯N-烷烃和甲烷/ N-烷烃二元混合物的相平衡和关键性质,并将结果与​​SRK EOS的另外两种建模方法进行比较。在纯流体的情况下,CSRK提供了相平衡和关键特性的精确整体描述;然而,与平均场模型相比,观察到饱和压力和其他性能偏差的微小增加。对于二进制混合物,可以看到临界体积描述的改进,而对于其他性质,获得了类似的结果。

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