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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Monte Carlo Simulations of Fluid Phase Equilibria and Interfacial Properties for Water/Alkane Mixtures: An Assessment of Nonpolarizable Water Models and of Departures from the Lorentz-Berthelot Combining Rules
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Monte Carlo Simulations of Fluid Phase Equilibria and Interfacial Properties for Water/Alkane Mixtures: An Assessment of Nonpolarizable Water Models and of Departures from the Lorentz-Berthelot Combining Rules

机译:水/烷烃混合物的流体相平衡和界面性能的蒙特卡罗模拟:对非扩散水模型的评估和Lorentz-Berthelot结合规则的偏离

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摘要

Monte Carlo simulations in the Gibbs ensemble were carried out to determine the mutual solubilities for water/n-alkane mixtures over a wide range of temperatures, pressures, and alkane chain lengths. Combinations of the popular, nonpolarizable SPC/E, TIP4P, and TIP4P/2005 water models with the TraPPE united atom model for alkanes are explored to represent these mixtures. Significant deviations from the experimental data are observed for vapor-liquid and liquid-liquid equilibria where the errors in the predicted mole fraction often exceed a factor of 2 Utilizing a scoring metric based on the logarithmic deviation in mole fraction from experimental data, we find that the TIP4P water model outperforms the SPC/E and TIP4P/2005 models in predicting the fluid phase equilibria for water/alkane mixtures. Three models with adjusted Lennard-Jones parameters for water-alkane cross-interactions reflecting departures from the Lorentz-Berthelot combining rules are also investigated. Although a large increase in the well depth can yield a negative Gibbs free energy of transfer for water from the vapor to alkane-rich liquid phases, the overall performance appears to worsen compared to the models using the standard combining rules. Using the standard Lorentz-Berthelot combining rules, the models yield interfacial tensions that deviate by about 10% from the experimental data, but a large increase in the water-alkane cross-interactions leads to a significant underprediction of the interfacial tension.
机译:吉布斯集合中的蒙特卡罗模拟是进行的,以确定水/正烷烃混合物在宽范围,压力和烷烃链长的互溶性。探讨了流行的,不可偏大的SPC / E,TIP4P和TIP4P / 2005水模型的组合,其中具有用于烷烃的Trappe United Atom模型,以代表这些混合物。从实验数据显著偏差观察到汽 - 液和液 - 液平衡,其中在所述预测摩尔分数的错误通常超过2利用基于从实验数据摩尔分数的对数偏差度量得分的因素,我们发现Tip4P水模型在预测水/烷烃混合物的流体相平衡方面优于SPC / E和TIP4P / 2005模型。还研究了三种模型,调整的Lennard-Jones参数,用于从Lorentz-Berthelot组合规则中反映的水烷烃交叉相互作用。虽然孔深度的大幅增加可以产生对来自蒸汽到富含烷烃的液相转移的负吉布斯的可自由能量,但与使用标准组合规则的模型相比,整体性能似乎恶化。使用标准的Lorentz-berthelot组合规则,模型产生界面张力,从实验数据中偏离约10%,但水 - 烷烃交叉相互作用的大幅增加导致界面张力的显着欠鉴定。

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