LAPSE:2023.33737
Published Article
LAPSE:2023.33737
Catalytic Hydrogenation of CO2 to Methanol over Cu/MgO Catalysts in a Semi-Continuous Reactor
Sascha Kleiber, Moritz Pallua, Matthäus Siebenhofer, Susanne Lux
April 24, 2023
Methanol synthesis from carbon dioxide (CO2) may contribute to carbon capture and utilization, energy fluctuation control and the availability of CO2-neutral fuels. However, methanol synthesis is challenging due to the stringent thermodynamics. Several catalysts mainly based on the carrier material Al2O3 have been investigated. Few results on MgO as carrier material have been published. The focus of this study is the carrier material MgO. The caustic properties of MgO depend on the caustification/sintering temperature. This paper presents the first results of the activity of a Cu/MgO catalyst for the low calcining temperature of 823 K. For the chosen calcining conditions, MgO is highly active with respect to its CO2 adsorption capacity. The Cu/MgO catalyst showed good catalytic activity in CO2 hydrogenation with a high selectivity for methanol. In repeated cycles of reactant consumption and product condensation followed by reactant re-dosing, an overall relative conversion of CO2 of 76% and an overall selectivity for methanol of 59% was obtained. The maximum selectivity for methanol in a single cycle was 88%.
Keywords
bifunctional catalyst, caustic MgO, CO2 hydrogenation, Methanol
Subject
Suggested Citation
Kleiber S, Pallua M, Siebenhofer M, Lux S. Catalytic Hydrogenation of CO2 to Methanol over Cu/MgO Catalysts in a Semi-Continuous Reactor. (2023). LAPSE:2023.33737
Author Affiliations
Kleiber S: Institute of Chemical Engineering and Environmental Technology, Graz University of Technology, NAWI Graz, Inffeldgasse 25C, 8010 Graz, Austria
Pallua M: Institute of Chemical Engineering and Environmental Technology, Graz University of Technology, NAWI Graz, Inffeldgasse 25C, 8010 Graz, Austria
Siebenhofer M: Institute of Chemical Engineering and Environmental Technology, Graz University of Technology, NAWI Graz, Inffeldgasse 25C, 8010 Graz, Austria
Lux S: Institute of Chemical Engineering and Environmental Technology, Graz University of Technology, NAWI Graz, Inffeldgasse 25C, 8010 Graz, Austria [ORCID]
Journal Name
Energies
Volume
14
Issue
14
First Page
4319
Year
2021
Publication Date
2021-07-17
Published Version
ISSN
1996-1073
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Original Submission
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PII: en14144319, Publication Type: Journal Article
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LAPSE:2023.33737
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doi:10.3390/en14144319
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Apr 24, 2023
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