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首页> 外文期刊>Fluid Phase Equilibria >Modification of PSRK mixing rules and results for vapor-liquid equilibria, enthalpy of mixing and activity coefficients at infinite dilution
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Modification of PSRK mixing rules and results for vapor-liquid equilibria, enthalpy of mixing and activity coefficients at infinite dilution

机译:修改PSRK混合规则和结果以实现气液平衡,混合焓和无限稀释时的活度系数

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The predictive Soave-Redlich-Kwong (PSRK) equation of state (EOS) is a well-established method for the prediction of thermodynamic properties required in process simulation. But there are still some problems to be solved, e.g. the reliability for strong asymmetric mixtures of components which are very different in size. The following modifications are introduced in the PSRK mixing rules: the Flory-Huggins term in the mixing rule for the EOS parameter a, and the combinatorial part in the UNIFAC model are skipped simultaneously; a nonlinear mixing rule for the EOS parameter b, instead of the linear mixing rule, is proposed. With these two modifications better results are obtained for vapor-liquid equilibria and activity coefficients at infinite dilution for alkane-alkane systems, specially for asymmetric systems. In order to obtain better results for enthalpy of mixing, temperature-dependent parameters are used. Group interaction parameters have been fitted for several groups, and the results are compared with the Modified UNIFAC (Dortmund), and the PSRK methods. (C) 2002 Elsevier Science B.V All rights reserved. [References: 26]
机译:预测的Soave-Redlich-Kwong(PSRK)状态方程(EOS)是一种成熟的方法,用于预测过程仿真中所需的热力学性质。但是仍然有一些问题需要解决,例如尺寸差异很大的组分的强不对称混合物的可靠性。 PSRK混合规则中引入了以下修改:EOS参数a的混合规则中的Flory-Huggins项和UNIFAC模型中的组合部分被同时跳过;提出了EOS参数b的非线性混合规则,而不是线性混合规则。通过这两个修改,对于烷烃-烷烃体系,特别是对于不对称体系,在无限稀释下的气液平衡和活度系数可获得更好的结果。为了获得更好的混合焓,使用了温度相关参数。组交互参数已适合多个组,并将结果与​​改进的UNIFAC(Dortmund)和PSRK方法进行了比较。 (C)2002 Elsevier Science B.V保留所有权利。 [参考:26]

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