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October 3, 2024Industrial & Engineering Chemistry Research8 citationsOpen Access

Pore Network Modeling of Intraparticle Transport Phenomena Accompanied by Chemical Reactions

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AFA. FathiganjehlouEPE.A.J.F. PetersKBK.A. Buist

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Abstract

In this work, a 3D pore network model (PNM) is introduced for modeling reaction-diffusion phenomena, with and without coupled heat transfer, in a spherical porous catalyst particle. The particle geometry is generated by packing thousands of microspheres inside a large sphere to represent the 3D geometry, porosity, and tortuosity of a spherical catalyst particle. A pore-network representation is extracted from this geometry, and a PNM for diffusion-reaction and heat conduction is constructed. This newly proposed particle-scale PNM allows for the application of realistic 3D nonuniform boundary conditions on the particle's surface, which is commonly encountered in slender packed-bed reactors. Concentration profiles inside the particle, and effectiveness of the reactions, is analyzed.

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Fathiganjehlou et al. (2024) studied this question.

synapsesocial.com/papers/68e55db1e2b3180350efb223https://doi.org/10.1021/acs.iecr.4c01727
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