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Simultaneous prediction of interfacial tension and phase equilibria in binary mixtures - An approach based on cubic equations of state with improved mixing rules

机译:同时预测二元混合物中的界面张力和相平衡-基于状态立方方程的改进混合规则的方法

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Vapor-liquid interfacial tensions of miscible mixtures have been predicted by applying the gradient theory to an improved Peng-Robinson equation of state. The modified Huron-Vidal mixing rule model has been considered for fitting vapor-liquid equilibrium data of miscible polar and non-polar mixtures and, then, for predicting the interfacial tension of these mixtures. According to results, an accurate and globally stable fitting of the vapor-liquid equilibrium data results on a physically coherent prediction of interfacial tensions in the full concentration range. In addition. we present a criteria based on the geometry of the grand potential function along the interface for assessing the predictive value of the GT. Calculations for subcritical binary mixtures are presented and compared to experimental data and the Parachor method for demonstrating the potential of the unified approach suggested in this work. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过将梯度理论应用于改进的Peng-Robinson状态方程,可以预测可混溶混合物的汽液界面张力。已考虑使用修改后的休伦-维达尔混合规则模型来拟合可混溶的极性和非极性混合物的气液平衡数据,然后用于预测这些混合物的界面张力。根据结果​​,对气液平衡数据进行准确且全局稳定的拟合,可以得出在整个浓度范围内界面张力的物理一致预测。此外。我们提出了一个基于沿着界面的大势函数几何形状的标准,用于评估GT的预测价值。提出了亚临界二元混合物的计算方法,并将其与实验数据和Parachor方法进行了比较,以证明本文提出的统一方法的潜力。 (C)2004 Elsevier B.V.保留所有权利。

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