Stephan Simon, Hasse Hans
Laboratory of Engineering Thermodynamics (LTD), TU Kaiserslautern, Kaiserslautern 67663, Germany.
Phys Chem Chem Phys. 2020 Jun 14;22(22):12544-12564. doi: 10.1039/d0cp01411g. Epub 2020 May 26.
Interfacial properties of binary fluid mixtures were studied using both molecular dynamics (MD) simulations and density gradient theory (DGT). The focus of the study is on the relation of the interfacial properties to the phase diagram of the mixture. Two binary Lennard-Jones mixtures were investigated in a wide range of states: a highly asymmetric mixture (type III), which exhibits vapour-liquid equilibria (VLE and VLE), liquid-liquid equilibria (LLE), a three-phase equilibrium (VLLE), and supercritical fluid-fluid equilibria (FFE), and, as a reference, an ideal mixture (type I). The studied interfacial properties are: the surface tension, the relative adsorption, the width of the interfacial region, and the enrichment of the low-boiling component, on which we set a focus. Enrichment was observed at VL interfaces; and, to a small extent, also at LL interfaces; but not at the supercritical FF interfaces. The large enrichment found at VL interfaces of the type III mixture can be interpreted as a wetting transition: approaching the VLLE three-phase line from the VL side, the enrichment gets stronger and can be interpreted as precursor of the second liquid phase L. However, the actual existence of a three-phase line in the phase diagram is no prerequisite for an enrichment. The enrichment is found to be highly temperature-dependent and increases with decreasing temperature.
使用分子动力学(MD)模拟和密度梯度理论(DGT)研究了二元流体混合物的界面性质。该研究的重点是界面性质与混合物相图的关系。研究了两种处于广泛状态的二元 Lennard-Jones 混合物:一种高度不对称的混合物(III 型),它表现出气液平衡(VLE 和 VLE)、液液平衡(LLE)、三相平衡(VLLE)和超临界流体-流体平衡(FFE),以及作为参考的理想混合物(I 型)。所研究的界面性质包括:表面张力、相对吸附、界面区域的宽度以及低沸点组分的富集情况,我们重点关注了后者。在气液界面观察到了富集现象;在液液界面也有少量富集;但在超临界流体-流体界面未观察到富集。在 III 型混合物的气液界面发现的大量富集现象可解释为一种润湿转变:从气液一侧接近 VLLE 三相线时,富集现象变得更强,可解释为第二液相 L 的前驱体。然而,相图中三相线的实际存在并非富集的必要前提。发现富集现象高度依赖于温度,且随温度降低而增加。