A Mechanistic Model on Catalyst Deactivation by Coke Formation in a CSTR Reactor

Author:

Muhammad Ishaka12,Makwashi Nura3,Ahmed Tariq Galadanchi4ORCID,Manos George1ORCID,Zhao Donglin5

Affiliation:

1. Department of Chemical Engineering, University College London, London WC1E 7JE, UK

2. Department of Chemistry, Zamfara State College of Education, Maru P.M.B. 860272, Nigeria

3. Department of Chemical and Petroleum Engineering, Bayero University, Kano P.M.B. 3011, Nigeria

4. School of Computing Engineering and Digital Technologies, Teesside University, Middlesbrough TS1 3BX, UK

5. School of Engineering, London South Bank University, London SE1 0AA, UK

Abstract

A mechanistic model on catalyst deactivation by coke formation in a continuous stirred tank reactor (CSTR) has been developed in the paper. Catalyst deactivation by coke formation was treated as a surface reaction. Four reaction mechanisms representing coke formation through different routes were proposed. The evolved system of ordinary differential equations (ODEs) was solved numerically using MATLAB. This approach was validated by applying it to the skeletal isomerization of 1-pentene over ferrierite. Simulation results were compared qualitatively to those obtained from the literature. Simulation results indicated that coke formation is an extremely rapid process with fast formation of coke components on the strongest acid sites leading to final coke. The coke deposition is slower at higher residence times resulting in more stable product formation and weaker deactivation. The results obtained from this work revealed that the developed model is indeed able to successfully demonstrate the most essential features of catalyst deactivation by coke formation and are in agreement with the findings in the literature. Future work is aimed to extend the study to different reactors such as a plug flow reactor, in addition to analysis of the reaction system’s sensitivity to variables such as temperature and pressure.

Funder

Petroleum Technology Development Fund

subsidiary of Nigeria National Petroleum Co-operation

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

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