Multi-scale Pore Network Modeling of a Reactive Packed Bed

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Abstract

In this study, we introduce a novel multi-scale Pore Network Model (PNM) designed to couple reactor-scale and particle-scale transport phenomena. To model reactor-scale phenomena, we employ a 3D reactor-scale PNM. This reactor-scale PNM is extracted from a packed column filled with spherical particles. Through analysis of the reactor-scale PNM, we obtain insight into the flow behavior of the reactor, which, in turn, is utilized for modeling species dispersion. For modeling particle-scale transport phenomena, we employ a 3D particle-scale PNM to simulate species diffusion and reaction within a spherical porous catalyst particle. This particle is represented with thousands of micro-spheres to represent the porous catalyst particles. The developed particle-scale PNM allows the treatment of realistic 3D boundary conditions on the catalyst particle’s surface. This paper presents an innovative methodology by combining the reactor-scale PNM with the particle-scale PNM, achieved through the incorporation of surface fragments. Both the reactor-scale and particle-scale PNMs have undergone thorough calibration and validation in our previous research (Fathiganjehlou et al. 2023; 2024). The developed multi-scale PNM offers a fast model capable of generating local partially resolved results for the catalytic packed bed reactor within a matter of minutes. This model lays the foundation for multi-scale pore network modeling of real packed bed reactors.
Original languageEnglish
Article number153584
Number of pages17
JournalChemical Engineering Journal
Volume496
DOIs
Publication statusPublished - 15 Sept 2024

Funding

This work is a part of the research program TOP Grants Chemical Sciences with project number 716.018.001, which is financed by the Dutch Research Council (NWO), The Netherlands.

FundersFunder number
Nederlandse Organisatie voor Wetenschappelijk Onderzoek

    Keywords

    • Packed bed reactor
    • Multi-scale Pore Network Model
    • Reactor-scale transport phenomena
    • Particle-scale transport phenomena
    • Reaction

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