The potential of metal oxide supported Au catalysts for the formation of methanol from CO2 and H-2 under conditions favorable for decentralized and local conversion, which could be concepts for chemical energy storage, was investigated. Significant differences in the catalytic activity and selectivity of Au/Al2O3, Au/TiO2, AuZnO, and Au/ZrO2 catalysts for methanol formation under moderate reaction conditions at a pressure of 5bar and temperatures between 220 and 240 degrees C demonstrate pronounced support effects. A high selectivity (>50%) for methanol formation was obtained only for Au/ZnO. Furthermore, measurements on Au/ZnO samples with different Au particle sizes reveal distinct Au particle size effects: although the activity increases strongly with the decreasing particle size, the selectivity decreases. The consequences of these findings for the reaction mechanism and for the potential of Au/ZnO catalysts for chemical energy storage and a green methanol technology are discussed.
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Institute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, GermanyInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany
Chen, Shilong
Abdel-Mageed, Ali M.
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Institute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, GermanyInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany
Abdel-Mageed, Ali M.
Hauble, Ashlee
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Institute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, GermanyInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany
Hauble, Ashlee
Ishida, Tamao
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Research Center for Gold Chemistry, Department of Applied Chemistry for Environment, Graduate School of Urban Environmental Sciences, Tokyo Metropolitan University, Tokyo,192-0397, JapanInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany
Ishida, Tamao
Murayama, Toru
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Research Center for Gold Chemistry, Department of Applied Chemistry for Environment, Graduate School of Urban Environmental Sciences, Tokyo Metropolitan University, Tokyo,192-0397, JapanInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany
Murayama, Toru
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Parlinska-Wojtan, Magdalena
Behm, R. Jürgen
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Institute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, GermanyInstitute of Surface Chemistry and Catalysis, Ulm University, Ulm,D-89081, Germany