首页> 外文期刊>The Journal of Chemical Physics >Molecular modeling of the liquid-vapor interfaces of a multi-component mixture: Prediction of the coexisting densities and surface tensions at different pressures and gas compositions
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Molecular modeling of the liquid-vapor interfaces of a multi-component mixture: Prediction of the coexisting densities and surface tensions at different pressures and gas compositions

机译:多组分混合物的液-汽界面的分子模型:在不同压力和气体成分下共存密度和表面张力的预测

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摘要

Two-phase molecular simulations are performed in order to report the interfacial tensions and the coexisting densities of a multicomponent mixture (nitrogen + methane) + water for five gas compositions in the pressure range of 1-30 MPa at 298 K. The interfacial tensions are calculated using different definitions and the long range corrections of the surface tensions are considered using expressions designed for multicomponent mixtures and each definitions. We can conclude that the agreement with experiments is quantitative with deviations smaller than 5% for the interfacial tensions and 2% for the densities. The interfacial region is described in terms of specific arrangements of the gas components at the water surface.
机译:为了报告界面张力以及在298 K下压力范围为1-30 MPa的5种气体组分的多组分混合物(氮气+甲烷)+水的共存密度,进行了两相分子模拟。使用不同的定义进行计算,并使用针对多组分混合物设计的表达式和每个定义来考虑对表面张力进行远距离校正。我们可以得出结论,与实验的一致性是定量的,界面张力偏差小于5%,密度偏差小于2%。根据在水表面的气体组分的特定布置来描述界面区域。

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