Publication:
CO2 Reforming of CH4 on Mesoporous Alumina-Supported Cobalt Catalyst: Optimization of Lanthana Promoter Loading

Date
2021
Authors
Tran N.T.
Kumar P.S.
Van Le Q.
Van Cuong N.
Phuong P.T.T.
Jalil A.A.
Sharma G.
Kumar A.
Sharma A.
Ayodele B.V.
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Springer
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Abstract
The impact of La2O3 promoter loading on alumina-supported cobalt catalysts was investigated in terms of physicochemical properties and catalytic performance for CO2 reforming of methane (CRM) at stoichiometric CH4/CO2 ratio and 1023 K. Both Co3O4 (with crystal size: 5.2�8.4 nm) and La2O3 nanoparticles were finely dispersed on support surface. The promotional La2O3 effect could noticeably increase CH4 and CO2 conversions to 29.3% and 17.3%, correspondingly due to improved basic site concentration and decreasing crystallite size of active metal in association with promoter addition. 5%La loading was an optimal promoter content for reactant conversions as well as yield of H2 and CO. 5%La-10%Co/Al2O3 also exhibited the highest resistance to carbon deposition owing to the basic nature, redox feature and oxygen vacancy of La2O3 dopant. Notably, the H2/CO ratio obtained within 0.84�0.98 is preferable for Fischer-Tropsch reaction in downstream to yield liquid hydrocarbon fuels. � 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
Description
Alumina; Aluminum oxide; Carbon dioxide; Catalyst supports; Catalytic reforming; Cobalt; Crystallite size; Fischer-Tropsch synthesis; Lanthanum oxides; Physicochemical properties; Alumina-supported cobalt catalyst; Carbon deposition; Catalytic performance; CO2 reforming of methane; Fischer-Tropsch reaction; Liquid hydrocarbon fuel; Mesoporous alumina; Reactant conversion; Loading
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