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Thermodynamic property calculations with the universal mixing rule for EoS/G(E) models: Results with the Peng-Robinson EoS and a UNIFAC model

机译:用EoS / G(E)模型的通用混合规则进行热力学性质计算:Peng-Robinson EoS和UNIFAC模型的结果

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The universal mixing rule (UMR), which incorporates an activity coefficient model in a cubic equation of state (EoS), and is applicable to all type of system asymmetries up to solvent/polymer ones, has been recently developed in our laboratory [Voutsas et al., Ind. Eng. Chem. Res. 43 (2004) 62381. The original UNIFAC model with temperature-independent interaction parameters was used in the original publication, which leads, however, to unsatisfactory VLE predictions at high temperatures and poor heats of mixing predictions. In this study the UMR is applied by coupling the translated and modified Peng-Robinson (t-mPR) EoS with an original UNIFAC-type model that utilizes linearly temperature-dependent interaction parameters, eliminating, thus, the aforementioned weaknesses. The performance of the resulting EoS/G(E) model, referred to as UMR-PRU, utilizing the available UNIFAC interaction parameters, as well as some parameters developed here for gas involving pairs, is evaluated in the prediction and, when necessary, correlation/prediction, of various thermodynamic properties, i.e. VLE, LLE, VLLE, SGE and heats of mixing. The results indicate that the new model represents a unique, simple and reliable tool for thermodynamic property calculations for systems of various degrees of non-ideality and asymmetry, including polymer solutions. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们实验室最近开发了通用混合规则(UMR),该规则将活度系数模型包含在立方状态方程(EoS)中,并且适用于所有类型的系统不对称性,直至溶剂/聚合物不对称性[Voutsas等等,工业工程师。化学Res。 43(2004)62381.在原始出版物中使用了具有与温度无关的交互参数的原始UNIFAC模型,但是,这导致在高温下VLE预测不令人满意,并且混合热不佳。在这项研究中,通过将翻译后的经过修改的Peng-Robinson(t-mPR)EoS与利用线性依赖温度的相互作用参数的原始UNIFAC类型模型耦合来应用UMR,从而消除了上述缺点。最终的EoS / G(E)模型(称为UMR-PRU)的性能,利用可用的UNIFAC相互作用参数,以及此处为涉及气体对的气体开发的一些参数,在预测中进行评估,必要时进行相关/预测各种热力学性质,即VLE,LLE,VLLE,SGE和混合热。结果表明,该新模型代表了一种独特,简单而可靠的工具,用于计算各种程度的非理想和不对称性(包括聚合物溶液)的系统的热力学性质。 (c)2006 Elsevier B.V.保留所有权利。

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