烷烃和芳烃二元混合物在 ZSM-5 沸石中的扩散行为:蒙特卡罗动力学研究

IF 3.5 3区 工程技术 Q2 ENGINEERING, CHEMICAL
AIChE Journal Pub Date : 2024-08-28 DOI:10.1002/aic.18590
Brian Gray, John Kuhn, Babu Joseph
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引用次数: 0

摘要

采用粗粒度方法结合动力学蒙特卡罗(KMC)模拟研究了碳氢化合物在 MFI 型沸石中的扩散。该模型用于捕捉和分离碳氢化合物扩散的基本特征,如分子推动、通过和阻挡。修改后的伦纳德-琼斯(Lennard-Jones)型力场用于近似分子间的相互作用以及分子与沸石晶格中氧的相互作用。速率表达式的基础是构型扩散理论,并对其进行了调整,以准确反映沸石中碳氢化合物分子的运动。对单一碳氢化合物以及二元混合物的低负荷和高负荷扩散系数进行了估算。在所研究的所有情况下,实验数据和分子动力学模拟结果都达到了合理的一致。该模型被概念化为一种分析工具,可用于解决关键的工程课题,如沸石作为尺寸选择性屏障的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusion behaviors of binary mixtures of alkanes and aromatics through ZSM-5 zeolite: A kinetic Monte Carlo study

Diffusion of hydrocarbon species in an MFI-type zeolite was investigated using a coarse-grained approach combined with Kinetic Monte Carlo (KMC) simulations. The model was employed to capture and isolate the essential characteristics of hydrocarbon diffusion such as molecular pushing, passing, and blocking. A modified Lennard-Jones type forcefield was used to approximate interactions between molecules, and molecules with the oxygen in the zeolite lattice. The basis for the rate expressions is configurational diffusion theory, which has been adjusted to account for an accurate representation of the motions of hydrocarbon molecules trapped in the zeolite. Diffusion coefficients were estimated for low and high loading of single hydrocarbons as well as binary mixtures. In all cases studied, reasonable agreement was achieved with reported experimental data and molecular dynamics simulations. The model is conceptualized as an analytical tool that may be used to address key engineering topics such as applications of zeolites as size-selective barriers.

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来源期刊
AIChE Journal
AIChE Journal 工程技术-工程:化工
CiteScore
7.10
自引率
10.80%
发文量
411
审稿时长
3.6 months
期刊介绍: The AIChE Journal is the premier research monthly in chemical engineering and related fields. This peer-reviewed and broad-based journal reports on the most important and latest technological advances in core areas of chemical engineering as well as in other relevant engineering disciplines. To keep abreast with the progressive outlook of the profession, the Journal has been expanding the scope of its editorial contents to include such fast developing areas as biotechnology, electrochemical engineering, and environmental engineering. The AIChE Journal is indeed the global communications vehicle for the world-renowned researchers to exchange top-notch research findings with one another. Subscribing to the AIChE Journal is like having immediate access to nine topical journals in the field. Articles are categorized according to the following topical areas: Biomolecular Engineering, Bioengineering, Biochemicals, Biofuels, and Food Inorganic Materials: Synthesis and Processing Particle Technology and Fluidization Process Systems Engineering Reaction Engineering, Kinetics and Catalysis Separations: Materials, Devices and Processes Soft Materials: Synthesis, Processing and Products Thermodynamics and Molecular-Scale Phenomena Transport Phenomena and Fluid Mechanics.
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