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多组分液体中的扩散:从微观到宏观尺度

Diffusion in Multicomponent Liquids: From Microscopic to Macroscopic Scales.

作者信息

Guevara-Carrion G, Gaponenko Y, Janzen T, Vrabec J, Shevtsova V

机构信息

Thermodynamics and Energy Technology, University of Paderborn , 33098 Paderborn, Germany.

Microgravity Research Center, Université Libre de Bruxelles (ULB) , CP-165/62, Av. F.D. Roosevelt, 50, B-1050 Brussels, Belgium.

出版信息

J Phys Chem B. 2016 Dec 1;120(47):12193-12210. doi: 10.1021/acs.jpcb.6b09810. Epub 2016 Nov 21.

Abstract

In spite of considerable research on the nature of aqueous alcohol mixtures that are characterized by microscopic inhomogeneity or incomplete mixing at the molecular level, transport properties have received little attention. We report the results of a study on diffusion in the ternary mixture of water with two alcohols, that is, water + methanol + ethanol, which is investigated on microscopic and macroscopic scales by means of molecular simulation and Taylor dispersion experiments. A novel protocol is developed for the comparison of mutual diffusion coefficients sampled by two fundamentally different approaches, which allows for their critical analysis. Because of complex intermolecular interactions, given by the presence of hydrogen bonding, the analysis of transport processes in this mixture is challenging for not only on the microscopic scale for simulation techniques but also on the macroscopic scale due to unfavorable optical properties. Binary limits of the Fick diffusion matrix are used for validation of the experimental ternary mixture results together with the verification of the validity of the phenomenological Onsager reciprocal relations. The Maxwell-Stefan diffusion coefficients and the thermodynamic factor are sampled by molecular simulation consistently on the basis of given force field models. The protocol for the comparison of the results from both approaches is also challenging because Fick diffusion coefficients of ternary mixtures depend on the frame of reference. Accordingly, the measured coefficients are transformed from the volume-averaged to the molar-averaged frame of reference, and it is demonstrated that both approaches provide not only similar qualitative behavior along two concentration paths but also strong quantitative agreement. This coordinated work using different approaches to study diffusion in multicomponent mixtures is expected to be a significant step forward for the accurate assessment of cross-diffusion.

摘要

尽管对具有微观不均匀性或在分子水平上不完全混合特征的水 - 醇混合物的性质进行了大量研究,但传输性质却很少受到关注。我们报告了一项关于水与两种醇(即水 + 甲醇 + 乙醇)的三元混合物中扩散的研究结果,该研究通过分子模拟和泰勒色散实验在微观和宏观尺度上进行。开发了一种新颖的方案,用于比较通过两种根本不同的方法采样的互扩散系数,从而能够对其进行批判性分析。由于存在氢键导致分子间相互作用复杂,该混合物中传输过程的分析不仅在微观尺度上对模拟技术具有挑战性,而且在宏观尺度上由于光学性质不佳也具有挑战性。菲克扩散矩阵的二元极限用于验证实验三元混合物的结果,并验证唯象昂萨格互易关系的有效性。基于给定的力场模型,通过分子模拟一致地采样麦克斯韦 - 斯蒂芬扩散系数和热力学因子。比较两种方法结果的方案也具有挑战性,因为三元混合物的菲克扩散系数取决于参考系。因此,将测量的系数从体积平均参考系转换为摩尔平均参考系,结果表明两种方法不仅在两条浓度路径上提供了相似的定性行为,而且在定量上也有很强的一致性。这种使用不同方法研究多组分混合物中扩散的协同工作有望成为准确评估交叉扩散的重要一步。

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