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分子模拟在渗透汽化过程中指导混合基质膜(MMMs)设计和优化中的应用。

Molecular Simulation for Guiding the Design and Optimization of Mixed Matrix Membranes (MMMs) in the Pervaporation Process.

机构信息

College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao 266100, China.

出版信息

Langmuir. 2023 Apr 11;39(14):5199-5210. doi: 10.1021/acs.langmuir.3c00257. Epub 2023 Mar 28.

Abstract

Molecular simulation has been used extensively in the study of pervaporation membranes as a new economical and environmentally friendly research method. In this paper, A-SiO/PDMS-PTFE mixed matrix membranes (MMMs) were prepared by molecular-simulation-guided experiments to achieve the separation of dimethyl carbonate/methanol (DMC/MeOH)) azeotropes. The interaction energy, X-ray diffraction pattern mean square displacement, and density field between PDMS and inorganic particles were analyzed by molecular dynamics simulations. The dissolution and diffusion processes of the DMC/MeOH azeotropes system in the MMM were simulated, and the surface-silylated silica (A-SiO) with relatively better performance was screened. Based on the simulation results, A-SiO/PDMS-PTFE MMMs were prepared by the coblending method, and the pervaporation separation performance of MMM membranes for DMC/MeOH azeotropes with different A-SiO loadings was investigated. When the A-SiO loading was 15 wt %, the separation factor of DMC/MeOH azeotropes at 50 °C was 4.74 and the flux was 1178 g m h, which was consistent with the expected results of the simulation. The MMMs showed good stability in pervaporation over a period of up to 120 h. This study demonstrates that molecular simulations can provide a viable means for pretest screening and validation of experimental mechanisms, and to a certain extent, guide the design and optimization of pervaporation membranes.

摘要

分子模拟已被广泛应用于渗透蒸发膜的研究中,成为一种新的经济环保的研究方法。本文通过分子模拟指导实验,制备了 A-SiO/PDMS-PTFE 杂化基膜(MMM),以实现碳酸二甲酯/甲醇(DMC/MeOH)共沸物的分离。通过分子动力学模拟,分析了 PDMS 与无机颗粒之间的相互作用能、X 射线衍射图谱均方根位移和密度场。模拟了 DMC/MeOH 共沸物体系在 MMM 中的溶解和扩散过程,并筛选出具有相对较好性能的表面硅烷化二氧化硅(A-SiO)。基于模拟结果,采用共混法制备了 A-SiO/PDMS-PTFE MMM,并考察了不同 A-SiO 负载量的 MMM 对 DMC/MeOH 共沸物的渗透蒸发分离性能。当 A-SiO 负载量为 15wt%时,在 50°C 下 DMC/MeOH 共沸物的分离因子为 4.74,通量为 1178g·m h,与模拟预期结果一致。MMM 在长达 120 h 的渗透蒸发过程中表现出良好的稳定性。该研究表明,分子模拟可为实验机制的预测试筛选和验证提供可行的方法,并在一定程度上指导渗透蒸发膜的设计和优化。

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