首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Prediction of true critical pressure of multi-component mixtures: Extending fast estimation methods
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Prediction of true critical pressure of multi-component mixtures: Extending fast estimation methods

机译:多组分混合物真正临界压力的预测:延伸快速估计方法

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摘要

Various fast estimation methods such as Chueh-Prausnitz, Kreglewski-Kay, modified Wilson, and Redlich-Kister are available for predicting vapor-liquid critical pressure of fluid mixtures. The majority of these methods are dependent on the binary interaction parameters. Therefore, to achieve better prediction results for a multi component mixture, interaction parameters for each binary set of components must be extracted or correlated from a reliable experimental data source. In the present work, 2773 experimental data on true critical pressure of 351 binary mixtures were collected through comprehensive literature search. Based on this data set, the appropriate fast estimation methods have been extended or modified and new interaction parameters for each binary set have been introduced. Besides, new correlations have been developed to estimate the interaction parameters of organic mixtures. Finally, the capability of different methods has been evaluated for predicting true critical pressure of 34 different multi-component mixtures with 210 data points.
机译:各种快速估算方法,如Chueh-Prausnitz、Kreglewski-Kay、修正的Wilson和Redlich-Kister,可用于预测流体混合物的汽液临界压力。这些方法大多依赖于二元相互作用参数。因此,为了对多组分混合物获得更好的预测结果,必须从可靠的实验数据源中提取或关联每个二元组分的相互作用参数。本文通过文献检索,收集了351种二元混合物真实临界压力的2773个实验数据。在此数据集的基础上,扩展或修改了相应的快速估计方法,并为每个二进制集引入了新的交互参数。此外,还发展了新的关联式来估计有机混合物的相互作用参数。最后,评估了不同方法预测34种不同多组分混合物210个数据点的真实临界压力的能力。

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