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疏水材料中的水/醇混合物吸附:氢键导致的水侵入增强

Water/Alcohol Mixture Adsorption in Hydrophobic Materials: Enhanced Water Ingress Caused by Hydrogen Bonding.

作者信息

Krishna Rajamani, van Baten Jasper M

机构信息

Van't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, XH, Amsterdam 1098, The Netherlands.

出版信息

ACS Omega. 2020 Oct 22;5(43):28393-28402. doi: 10.1021/acsomega.0c04491. eCollection 2020 Nov 3.

Abstract

Microporous crystalline porous materials such as zeolites, metal-organic frameworks, and zeolitic imidazolate frameworks (ZIFs) have potential use for separating water/alcohol mixtures in fixed bed adsorbers and membrane permeation devices. For recovery of alcohols present in dilute aqueous solutions, the adsorbent materials need to be hydrophobic in order to prevent the ingress of water. The primary objective of this article is to investigate the accuracy of ideal adsorbed solution theory (IAST) for prediction of water/alcohol mixture adsorption in hydrophobic adsorbents. For this purpose, configurational bias Monte Carlo (CBMC) simulations are used to determine the component loadings for adsorption equilibrium of water/methanol and water/ethanol mixtures in all-silica zeolites (CHA, DDR, and FAU) and ZIF-8. Due to the occurrence of strong hydrogen bonding between water and alcohol molecules and attendant clustering, IAST fails to provide quantitative estimates of the component loadings and the adsorption selectivity. For a range of operating conditions, the water loading in the adsorbed phase may exceed that of pure water by one to two orders of magnitude. Furthermore, the occurrence of water-alcohol clusters moderates size entropy effects that prevail under pore saturation conditions. For quantitative modeling of the CBMC, simulated data requires the application of real adsorbed solution theory by incorporation of activity coefficients, suitably parameterized by the Margules model for the excess Gibbs free energy of adsorption.

摘要

微孔晶体多孔材料,如沸石、金属有机框架材料和沸石咪唑酯框架材料(ZIFs),在固定床吸附器和膜渗透装置中具有分离水/醇混合物的潜在用途。为了回收稀水溶液中存在的醇类,吸附材料需要具有疏水性,以防止水的进入。本文的主要目的是研究理想吸附溶液理论(IAST)预测疏水性吸附剂中水/醇混合物吸附的准确性。为此,使用构型偏置蒙特卡罗(CBMC)模拟来确定全硅沸石(CHA、DDR和FAU)和ZIF-8中水/甲醇和水/乙醇混合物吸附平衡的组分负载量。由于水和醇分子之间存在强氢键以及随之而来的聚集现象,IAST无法提供组分负载量和吸附选择性的定量估计。在一系列操作条件下,吸附相中水的负载量可能比纯水高出一到两个数量级。此外,水-醇簇的出现缓和了在孔饱和条件下占主导地位的尺寸熵效应。为了对CBMC进行定量建模,模拟数据需要通过纳入活度系数来应用真实吸附溶液理论,活度系数由Margules模型对吸附的过量吉布斯自由能进行适当参数化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a4/7643331/950b4cfe15bc/ao0c04491_0002.jpg

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