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首页> 外文期刊>Fluid Phase Equilibria >Quantitative comparison between predicted and experimental binary n-alkane plus benzene phase behaviors using cubic and PC-SAFT EOS
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Quantitative comparison between predicted and experimental binary n-alkane plus benzene phase behaviors using cubic and PC-SAFT EOS

机译:使用立方和PC-SAFT EOS对预测的和实验的二元正构烷烃和苯相行为进行定量比较

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The Perturbed-Chain Statistical Associating Fluid Theory (PC-SAFT) equation of state correctly predicts Type I phase behavior for binary n-alkane + aromatic and naphthenic mixtures, while cubic equations of state (Peng-Robinson (PR) and Soave-Redlich-Kwong (SRK)) predict a transition from Type I to Type II phase behavior within these families of mixtures, unless unconventional large and negative interaction parameters (k(ij)) are used. In this work, bubble pressures and L = V critical loci are evaluated for 13 binary n-alkane + benzene mixtures, including new data obtained for benzene + n-C-20, n-C-24, n-C-28 and n-C-36 binary mixtures. Computed bubble pressures for the Peng-Robinson (PR), Soave-Redlich-Kwong (SRK) and Perturbed-Chain Statistical Associating Fluid Theory (PC-SAFT) equations of state are compared with one another and with experimental measurements. The PC-SAFT EOS, with pure component parameters rescaled to conform with critical temperatures and pressures following the recommendation of Alfradique and Castier (2007), and interaction parameter values set to zero, yield accurate bubble pressures and critical loci for all benzene + n-alkane mixtures. By contrast, the PR and SRK EOS require mixture specific k(ij) values in order to provide quantitative bubble pressure and critical loci estimates, and best-fit let values exhibit significant temperature dependence. In the absence of experimental bubble pressures, options for estimating interaction parameters for cubic EOS for binary benzene + n-alkane mixtures, and for aromatic or naphthenic + alkane mixtures more broadly are discussed. While subject to further testing, selection of interaction parameter values for cubic EOS such that computed bubble pressures closely mimic bubble pressures predicted by the scaled PC-SAFT EOS is recommended. (C) 2016 Elsevier B.V. All rights reserved.
机译:扰动链统计缔合流体理论(PC-SAFT)状态方程可正确预测二元正构烷烃+芳烃和环烷烃混合物的I型相态,而立方状态方程(Peng-Robinson(PR)和Soave-Redlich- Kwong(SRK)预测这些混合物族中从I型到II型相态的转变,除非使用非常规的大和负相互作用参数(k(ij))。在这项工作中,评估了13种二元正构烷烃+苯混合物的气泡压力和L = V临界位点,包括有关苯+ n-C-20,n-C-24,n-C-28和n-C-36二元混合物获得的新数据。将彭-罗宾逊(PR),索阿夫-雷德利希-光(SRK)和扰动链统计缔合流体理论(PC-SAFT)状态方程的计算气泡压力相互比较,并与实验测量进行了比较。遵循Alfradique和Castier(2007)的建议,将PC-SAFT EOS的纯组分参数调整为与临界温度和压力相符的标准,并将相互作用参数值设置为零,从而对所有苯+ n-产生准确的气泡压力和临界位点烷烃混合物。相比之下,PR和SRK EOS需要特定于混合物的k(ij)值才能提供定量的气泡压力和临界位点估计值,而最佳拟合值显示出显着的温度依赖性。在没有实验气泡压力的情况下,讨论了估计二元苯+正构烷烃混合物的立方EOS以及更广泛地估算芳香族或环烷烃+烷烃混合物的相互作用参数的选项。在进行进一步测试时,建议选择立方EOS的相互作用参数值,以使计算出的气泡压力接近模拟按比例的PC-SAFT EOS预测的气泡压力。 (C)2016 Elsevier B.V.保留所有权利。

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