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通过计算机模拟理解等密度 Lennard-Jones 混合物中的界面行为。

Understanding the interfacial behavior in isopycnic Lennard-Jones mixtures by computer simulations.

作者信息

Garrido José Matías, Piñeiro Manuel M, Mejía Andrés, Blas Felipe J

机构信息

Dpto. de Ingeniería Química, Univ. de Concepción, POB 160-C, Concepción, Chile.

Dpto. de Física Aplicada, Fac. de Ciencias, Univ. de Vigo, E36310, Spain.

出版信息

Phys Chem Chem Phys. 2016 Jan 14;18(2):1114-24. doi: 10.1039/c5cp06562c.

Abstract

The physical characterization of the singular interfacial behavior of heterogeneous fluid systems is a very important step in preliminary stages of the design process, and also in the subsequent procedures for the determination of the optimal operating conditions. Molar isopycnicity or molar density inversion is a special case of phase equilibrium behavior that directly affects the relative position of phases in heterogeneous mixtures, without being affected by gravitational fields. This work is dedicated to characterize the impact of molar density inversion on the interfacial properties of Lennard-Jones binary mixtures. The results and specific trends of the molar density inversion phenomena on the peculiar calculated composition profiles across the interface and interfacial tensions are explored by using canonical molecular dynamics simulations of the Lennard-Jones binary mixtures. Our results show that the density inversion causes drastic changes in the density profiles of the mixtures. In particular, symmetrical and equal-sized Lennard-Jones mixtures always exhibit desorption along the interfacial zone, i.e. the interfacial concentration profiles show a relative minimum at the interface of the total density profiles that increases when the dispersive energy parameter (ε(ij)) between unlike species decreases. However, as the asymmetry of the Lennard-Jones mixtures increases (σ(i) ≠ σ(j)), the concentration profiles display a relative maximum at the interface, which implies the adsorption of the total density profiles along the interfacial zone.

摘要

对非均相流体系统独特界面行为进行物理表征,是设计过程初始阶段以及后续确定最佳操作条件程序中的非常重要的一步。摩尔等密度或摩尔密度反转是相平衡行为的一种特殊情况,它直接影响非均相混合物中各相的相对位置,且不受重力场影响。这项工作致力于表征摩尔密度反转对 Lennard-Jones 二元混合物界面性质的影响。通过对 Lennard-Jones 二元混合物进行正则分子动力学模拟,探究了摩尔密度反转现象对跨界面的特殊计算组成分布和界面张力的结果及具体趋势。我们的结果表明,密度反转会导致混合物密度分布发生剧烈变化。特别是,对称且尺寸相等的 Lennard-Jones 混合物总是沿界面区域出现解吸,即界面浓度分布在总密度分布的界面处呈现相对最小值,当异种分子间的色散能参数(ε(ij))减小时该最小值会增大。然而,随着 Lennard-Jones 混合物不对称性增加(σ(i) ≠ σ(j)),浓度分布在界面处呈现相对最大值,这意味着总密度分布沿界面区域发生吸附。

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