Simulation of the isomerization of an ortho-diethylbenzene on zeolites using a continuum approach and different diffusion models

Elias Klemm, Gerhard Emig
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引用次数: 4

Abstract

The overall kinetics of the isomerization of the dialkylbenzenes on zeolites such as ZSM-5 are affected by the intrinsic kinetics and, in many cases, additionally by configurational diffusion inside the microporous zeolite. Simulation studies on the basis of a continuum model allow a deeper insight into this complex situation. It has been shown that both a reactant diffusion limitation and product shape selectivity (different diffusion rates of the products) may influence the overall kinetics (conversion/selectivity). Calculating concentration profiles inside the crystallite gives additional details about the interrelation of diffusion and reaction. Due to the strong interaction between the diffusing molecules themselves, as well as between diffusing molecule and zeolite surface, various diffusion models have been implemented. Depending on the diffusion model used, it could be shown that at high occupancies, differences occurred only in the calculated conversions, but not in the calculated selectivities. On the basis of the simulation results a recommendation is given concerning the determination of diffusion coefficients from measured overall kinetics. Furthermore, it was found that selectivity strongly depends on the chosen type of reactor, e.g. a plug flow reactor or an ideally mixed reactor. This is important for a comparison of data measured in different experimental set-ups.

用连续介质方法和不同扩散模型模拟邻二乙苯在沸石上的异构化
二烷基苯在沸石(如ZSM-5)上的异构化总体动力学受到本征动力学的影响,在许多情况下,还受到微孔沸石内部构型扩散的影响。基于连续体模型的模拟研究可以更深入地了解这种复杂的情况。研究表明,反应物扩散限制和产物形状选择性(产物的不同扩散速率)都可能影响总体动力学(转化/选择性)。计算结晶内部的浓度分布可以提供有关扩散和反应相互关系的更多细节。由于扩散分子之间以及扩散分子与沸石表面之间的强相互作用,已经实现了各种扩散模型。根据所使用的扩散模型,可以表明,在高占位率下,差异只发生在计算的转化率上,而不发生在计算的选择性上。在模拟结果的基础上,提出了根据所测总动力学确定扩散系数的建议。此外,还发现选择性很大程度上取决于所选择的反应器类型,例如塞流反应器或理想混合反应器。这对于比较在不同实验装置中测量的数据是很重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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