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Study of the Oxidative Methane Coupling over SrO-La2O3 Catalyst: Experiment and Kinetic Modeling Full article

Journal Fuel Processing Technology
ISSN: 0378-3820
Output data Year: 2021, Volume: 213, Article number : 106667, Pages count : 15 DOI: 10.1016/j.fuproc.2020.106667
Tags Kinetic modeling; Oxidative coupling of methane; SrO-La2O3 catalyst
Authors Petrov Roman 1 , Reshetnikov Sergey 1 , Ivanova Yuliya 1
Affiliations
1 Boreskov Institute of Catalysis SB RAS, 5 Lavrentieva Avenue, Novosibirsk 630090, Russian Federation

Funding (1)

1 Federal Agency for Scientific Organizations 0303-2016-0004

Abstract: A 7-step kinetic model of oxidative coupling of methane (OCM) to C2+ hydrocarbons over the SrO-La2O3 catalyst was developed. The experiments were carried out in a fixed bed microcatalytic reactor within a temperature range of 650 to 850 °C. The overall reaction scheme with the minimal number of steps that well predicts experimental data was elucidated via the base of the proposed stoichiometric (molar) analysis of the products formed in the experiments. The reaction network contains three primary and four consecutive reactions, one of them being gas-phase. The rates of each heterogeneous reaction were described by a Langmuir-Hinshelwood type rate equation. Kinetic rate parameters were estimated by fitting to experimental data. The comparison showed that the developed kinetic model predicts experiments well, the average relative deviation between the experimental and simulated data was about 5% and the relative prediction error for all variables amounted to less than 10%. The developed kinetic model was verified by comparing the simulation results with the experimental data obtained over the SrO-La2O3 catalyst and compared with the widely known schemes of OCM reaction proposed by of other authors. A better agreement was observed between the experiments and our model prediction as compared with other models. © 2020 Elsevier B.V.
Cite: Petrov R. , Reshetnikov S. , Ivanova Y.
Study of the Oxidative Methane Coupling over SrO-La2O3 Catalyst: Experiment and Kinetic Modeling
Fuel Processing Technology. 2021. V.213. 106667 :1-15. DOI: 10.1016/j.fuproc.2020.106667 WOS Scopus РИНЦ AN OpenAlex
Dates:
Submitted: Aug 5, 2020
Accepted: Nov 3, 2020
Published online: Nov 27, 2020
Published print: Mar 1, 2021
Identifiers:
Web of science: WOS:000611822200010
Scopus: 2-s2.0-85096870867
Elibrary: 45122519
Chemical Abstracts: 2020:2440353
OpenAlex: W3107852138
Citing:
DB Citing
Scopus 15
Web of science 14
Elibrary 11
OpenAlex 15
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