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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Vapour-liquid phase equilibria and interfacial properties of fatty acid methyl esters from molecular dynamics simulations
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Vapour-liquid phase equilibria and interfacial properties of fatty acid methyl esters from molecular dynamics simulations

机译:来自分子动力学模拟的脂肪液相平衡和脂肪酸甲酯的界面性能

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摘要

We have determined the phase equilibria and interfacial properties of a methyl ester homologous series (from methyl acetate to methyl heptanoate) using direct simulations of the vapour-liquid interfaces. The methyl esters are modelled using the united atom approach in combination with transferable parameters for phase equilibria (TraPPE) force fields for alkanes, alkenes, carbon dioxide, ethers, and carboxylic acids in a transferable way. This allows us to take into account explicitly both dispersive and coulombic interactions, as well as the repulsive Pauli-exclusion interactions. Simulations are performed in the NVT or canonical ensemble using molecular dynamics. Vapour-liquid surface tension is determined using the virial route, i.e., evaluating the normal and tangential components of the pressure tensor along the simulation box. We have also calculated density profiles, coexistence densities, vapour pressures, surface entropies and enthalpies, and interfacial thickness as functions of temperature, as well as the normal boiling temperatures and the critical temperatures, densities, and pressures for each member of the series. Special attention is paid to the comparison between experimental data taken from the literature and our results obtained using molecular dynamics simulations. We also analyze the effect of increasing the molecular weight of the methyl esters (at fixed temperature) on all the properties considered, with special emphasis on phase equilibria envelopes and surface tension. The TraPPE force fields transferred from other molecules and chemical families are able to predict very accurately the experimental vapour-liquid phase envelopes of methyl esters. We also compare the results obtained from simulations of the surface tension, with experimental data taken from the literature. To our knowledge, this is the first time that vapour-liquid phase equilibria and interfacial properties, and particularly surface tension, of this methyl ester homologous series are obtained using computer simulation.
机译:我们已经确定了使用蒸汽液体界面的直接模拟的甲酯同源系列(从乙酸甲酯到甲基庚酸甲酯)的相平衡和界面性质。使用联合Atom方法与烷烃,烯烃,二氧化碳,醚和以可转移的方式的相均衡(Trappe)力领域的可转移参数组合使用联合Atom方法进行建模。这使我们能够明确地考虑分散和库仑相互作用,以及排斥的保罗排除相互作用。使用分子动力学在NVT或Canonical集合中进行仿真。使用Virial Route,即,评估沿模拟盒的压力张量的正常和切向分量测定蒸汽液面张力。我们还计算了密度型材,共存密度,蒸汽压力,表面熵和焓,以及界面厚度作为温度的功能,以及正常的沸腾温度和该系列元件的临界温度,密度和压力。特别注意从文献中取出的实验数据与我们使用分子动力学模拟获得的结果进行了特别的注意。我们还分析了增加甲酯(固定温度)在考虑所有性质上的分子量的效果,特别强调相平衡包络和表面张力。从其他分子和化学家族转移的木制力场能够预测非常精确的甲酯的实验蒸气液相包膜。我们还比较了从表面张力模拟获得的结果,并从文献中取出了实验数据。据我们所知,这是使用计算机模拟获得该甲酯同源系列的汽液相平衡和界面性质,特别是表面张力的第一次。

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    Univ Huelva Lab Simulac Mol &

    Quim Computac CIQSO Ctr Invest Quim Sostenible Huelva 21007 Spain;

    Univ Huelva Lab Simulac Mol &

    Quim Computac CIQSO Ctr Invest Quim Sostenible Huelva 21007 Spain;

    Univ Huelva Lab Simulac Mol &

    Quim Computac CIQSO Ctr Invest Quim Sostenible Huelva 21007 Spain;

    Univ Concepcion Dept Ingn Quim POB 160-C Concepcion Chile;

    Univ Huelva Lab Simulac Mol &

    Quim Computac CIQSO Ctr Invest Quim Sostenible Huelva 21007 Spain;

    Univ Huelva Lab Simulac Mol &

    Quim Computac CIQSO Ctr Invest Quim Sostenible Huelva 21007 Spain;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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