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沸石中化学平衡状态下二甲苯的竞争吸附

Competitive Adsorption of Xylenes at Chemical Equilibrium in Zeolites.

作者信息

Caro-Ortiz Sebastián, Zuidema Erik, Rigutto Marcello, Dubbeldam David, Vlugt Thijs J H

机构信息

Engineering Thermodynamics, Process & Energy Department, Faculty of Mechanical, Maritime and Materials Engineering, Delft University of Technology, Leeghwaterstraat 39, 2628 CB Delft, The Netherlands.

Shell Global Solutions International B.V., PO Box 38000, 1030 BN Amsterdam, The Netherlands.

出版信息

J Phys Chem C Nanomater Interfaces. 2021 Feb 25;125(7):4155-4174. doi: 10.1021/acs.jpcc.0c09411. Epub 2021 Feb 10.

Abstract

The separation of xylenes is one of the most important processes in the petrochemical industry. In this article, the competitive adsorption from a fluid-phase mixture of xylenes in zeolites is studied. Adsorption from both vapor and liquid phases is considered. Computations of adsorption of pure xylenes and a mixture of xylenes at chemical equilibrium in several zeolite types at 250 °C are performed by Monte Carlo simulations. It is observed that shape and size selectivity entropic effects are predominant for small one-dimensional systems. Entropic effects due to the efficient arrangement of xylenes become relevant for large one-dimensional systems. For zeolites with two intersecting channels, the selectivity is determined by a competition between enthalpic and entropic effects. Such effects are related to the orientation of the methyl groups of the xylenes. -Xylene is preferentially adsorbed if xylenes fit tightly in the intersection of the channels. If the intersection is much larger than the adsorbed molecules, -xylene is preferentially adsorbed. This study provides insight into how the zeolite topology can influence the competitive adsorption and selectivity of xylenes at reaction conditions. Different selectivities are observed when a vapor phase is adsorbed compared to the adsorption from a liquid phase. These insight have a direct impact on the design criteria for future applications of zeolites in the industry. MRE-type and AFI-type zeolites exclusively adsorb -xylene and -xylene from the mixture of xylenes in the liquid phase, respectively. These zeolite types show potential to be used as high-performing molecular sieves for xylene separation and catalysis.

摘要

二甲苯的分离是石油化工行业中最重要的过程之一。在本文中,研究了二甲苯在沸石中从液相混合物中的竞争吸附。考虑了气相和液相的吸附。通过蒙特卡罗模拟对几种沸石类型在250℃下纯二甲苯和二甲苯混合物在化学平衡时的吸附进行了计算。观察到,对于小的一维体系,形状和尺寸选择性熵效应占主导。对于大的一维体系,由于二甲苯的有效排列而产生的熵效应变得显著。对于具有两个相交通道的沸石,选择性由焓效应和熵效应之间的竞争决定。这些效应与二甲苯甲基的取向有关。如果二甲苯紧密地适合通道的交叉点,则优先吸附对二甲苯。如果交叉点比吸附分子大得多,则优先吸附间二甲苯。这项研究深入了解了沸石拓扑结构如何在反应条件下影响二甲苯的竞争吸附和选择性。与从液相吸附相比,吸附气相时观察到不同的选择性。这些见解对沸石在工业中未来应用的设计标准有直接影响。MRE型和AFI型沸石分别从液相二甲苯混合物中专门吸附对二甲苯和间二甲苯。这些沸石类型显示出有潜力用作二甲苯分离和催化的高性能分子筛。

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