论文标题

微观结构对层次结构化多孔催化剂的性能和失活的影响:孔网络模型

Microstructure Effects on Performance and Deactivation of Hierarchically Structured Porous Catalyst: a Pore Network Model

论文作者

Moghaddama, Masood, Abbassi, Abbas, Ghazanfarian, Jafar

论文摘要

在本文中,扩展了在层次结构化的多孔催化剂粒子中研究反应扩散过程的孔网络模型,以考虑通过焦化的失活现象。在此框架中,检查了内部颗粒孔结构和在焦炭沉积条件下的质量转移的相互作用。已经进行了原始的实验研究,以介绍该模型的发展。然后,已经研究了结构特征的巨大质量和孔径比,停用特性,可乐的最大负载以及运输特性,孔damkohler数对净反应速率和粒子停用的孔。考虑了三种停用机制,即现场覆盖范围,孔狭窄和孔隙阻塞。发现催化剂颗粒的失活可以分为两个条件:动力学失活和结构失活。结果表明,根据Damkohler的数量,增加大量的数量并不一定会改善催化剂的反应性和失活抗性。这项工作的关键发现是证明和量化在实验表征中观察到的典型新鲜催化剂微结构如何影响分层的典型新鲜催化剂微观结构,从而影响反应性和失活。

In this paper, the pore network model to investigate the reaction-diffusion process in the hierarchically structured porous catalyst particle is extended to consider the phenomenon of deactivation by coking. In this framework, the interaction of internal particle pore structure and mass transfer under the condition of coke deposition are examined. A primitive experimental investigation has been performed as an introduction to the development of the model. Then, the effect of structural features namely macroporosity and pore size ratio, the deactivation properties, the maximum loading of coke as well as the transport properties, the pore Damkohler number on the net reaction rate and deactivation of the particle have been investigated. Three deactivation mechanisms are accounted for, namely, the site coverage, the pore narrowing, and the pore blockage. It is found that the deactivation of the catalyst particle can be divided into two conditions: the kineticsal deactivation and the structural deactivation. It is shown that depending on the Damkohler number, increasing the macroporosity does not necessarily improve the reactivity and deactivation resistance of the catalyst. The key finding of this work is to demonstrate and quantify how changing the typical fresh catalyst microstructure observed in the experimental characterization into a hierarchical one influences the reactivity and deactivation.

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