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首页> 外文期刊>Fluid Phase Equilibria >EQUATIONS OF STATE USING AN EXTENDED TWU-COON MIXING RULE INCORPORATING UNIFAC FOR HIGH TEMPERATURE AND HIGH PRESSURE PHASE EQUILIBRIUM PREDICTIONS
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EQUATIONS OF STATE USING AN EXTENDED TWU-COON MIXING RULE INCORPORATING UNIFAC FOR HIGH TEMPERATURE AND HIGH PRESSURE PHASE EQUILIBRIUM PREDICTIONS

机译:使用扩展的TWU-COON混合规则并入UNIFA进行高温和高压相平衡预测的状态方程

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A mixing rule recently developed by Twu and Coon [C.H. Twu, J.E. Coon, CEOS/A(E) mixing rules constrained by the vdw mixing rule and the second virial coefficient, AIChE J. 42 (1996) 3212-3222] is extended to incorporate the UNIFAC group contribution method into an equation of state for the prediction of phase behavior of highly non-ideal systems over wide ranges of temperature and pressure. The mixing rule developed by Twu and Goon reduces to the van der Waals mixing rule. The Helmholtz excess free energy function with respect to a van der Waals fluid at infinite pressure has been related rigorously to the Helmholtz excess free energy at zero pressure. This extension of the Twu-Coon Mixing Rule goes gracefully from the classical van der Waals one-fluid mixing rule for non-polar fluids needed in the refining and gas processing industries to a mixing rule combining excess free energy models at low pressure with equations of state for the strongly polar systems found in the chemical industries. When the UNIFAC group contribution method is incorporated, the mixing rule becomes totally predictive, The completely predictive equation of state is shown to give accurate results for systems for which the UNIFAC model is in agreement with the experimental activity coefficients at low pressure. The UNIFAC-incorporated mixing rule provides a simple way to extend the UNIFAC group contribution method to high temperatures and pressures. (C) 1997 Elsevier Science B.V. [References: 17]
机译:Twu和Coon最近开发了一种混合规则[C.H. Twu,JE Coon,CEOS / A(E)受vdw混合规则和第二病毒系数约束的混合规则AIChE J. 42(1996)3212-3222]进行了扩展,以将UNIFAC组贡献方法合并到状态方程中用于预测高度非理想系统在很宽的温度和压力范围内的相行为。 Twu和Goon开发的混合规则简化为范德华混合规则。关于无限压力下的范德华流体的亥姆霍兹过量自由能函数已与零压力下的亥姆霍兹过量自由能严格相关。 Twu-Coon混合规则的扩展从精炼和气体处理行业所需的非极性流体的经典范德华一流体混合规则优雅地延伸到混合规则,该规则将低压下的多余自由能模型与方程指出化学工业中存在的强极性系统。当采用UNIFAC基团贡献方法时,混合规则变得完全具有预测性。对于UNIFAC模型与低压实验活动系数相符的系统,完全预测状态方程显示出准确的结果。包含UNIFAC的混合规则为将UNIFAC组贡献方法扩展到高温和高压提供了一种简单的方法。 (C)1997 Elsevier Science B.V. [参考:17]

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