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Development of reaction kinetics model for the production of synthesis gas from dry methane reforming.

Inayat, Abrar; Ahmad, Muhammad A.B.; Raza, Mohsin; Ghenai, Chaouki; Naqvi, Salman Raza; Ayoub, Muhammad

Authors

Abrar Inayat

Muhammad A.B. Ahmad

Mohsin Raza

Chaouki Ghenai

Salman Raza Naqvi

Muhammad Ayoub



Abstract

The energy supply systems dependent on fossils and municipal solid waste (MSW) materials are primarily responsible for releasing greenhouse (GHG) gases and their related environmental hazards. The increasing amount of methane (CH4) and carbon dioxide (CO2) is the scientific community's main concern in this context. Reduction in the emission amount of both gases combined with the conversion technologies that would convert these total threat gases (CO2 and CH4) into valuable feedstocks will significantly lower their hazardous impact on climate change. The conversion technique known as dry methane reforming (DMR) utilizes CO2 and CH4 to produce a combustible gas mixture (CO+H2), popularly known as synthesis gas/or syngas. Therefore, this research study aims to explore and enlighten the characteristics of the DMR mechanism. The conversion behaviour of CO2 and CH4 was studied with modelling and simulation of the DMR process using MATLAB. The results showed that inlet gas flow has a significant impact on the reactions. In contrast, the inlet molar composition ratio of the reactions was found to have no substantial effect on the mechanism of DMR.

Citation

INAYAT, A., AHMAD, M.A.B., RAZA, M., GHENAI, C., NAQVI, S.R. and AYOUB, M. 2021. Development of reaction kinetics model for the production of synthesis gas from dry methane reforming. Bulletin of chemical reaction engineering and catalysis [online], 16(2), pages 440-445. Available from: https://doi.org/10.9767/bcrec.16.2.10510.440-445

Journal Article Type Article
Acceptance Date May 5, 2021
Online Publication Date May 6, 2021
Publication Date Jun 30, 2021
Deposit Date Aug 28, 2023
Publicly Available Date Oct 9, 2023
Journal Bulletin of chemical reaction engineering and catalysis
Print ISSN 1978-2993
Electronic ISSN 1978-2993
Publisher Universitas Diponegoro
Peer Reviewed Peer Reviewed
Volume 16
Issue 2
Pages 440-445
DOI https://doi.org/10.9767/bcrec.16.2.10510.440-445
Keywords Greenhouse gases; Synthesis gas; Dry methane reforming; Reaction kinetics modelling
Public URL https://rgu-repository.worktribe.com/output/2009870

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