4.6 Article

CO2 Hydrogenation to Methanol on CuO-ZnO/SiO2 and CuO-ZnO/CeO2-SiO2 Catalysts Synthesized with fi-Cyclodextrin Template

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CATALYSTS
卷 13, 期 9, 页码 -

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MDPI
DOI: 10.3390/catal13091231

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CO2 utilization; methanol synthesis; copper oxide; zinc oxide; ceria; silica gel; beta-cyclodextrin

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In this study, copper (II)-zinc oxide catalysts were successfully synthesized using fi-cyclodextrin as a template. The addition of cerium at the gelation stage was found to enhance the performance of the catalyst in the conversion of carbon dioxide to methanol, achieving high selectivity and productivity.
A series of mixed copper (II)-zinc oxide catalysts supported on unmodified and ceriamodified silica supports were synthesized using fi-cyclodextrin as a template. The novelty of this work lies in the use of cyclosextrins for the template synthesis of catalyst supports. The obtained samples were analyzed by XRD, SEM-EDX, low-temperature nitrogen physisorption, XPS, and EPR. The magnetic properties of the catalysts were also measured. The thermal decomposition of precursors was analyzed by TGA combined with mass-spectrometric analysis of the evolved gases. The effects of the support pore size, the nature of the active phase and its loading, as well as the sequence of component deposition on the catalyst performance in the CO2 conversion to methanol were studied. The catalysts with cerium added at the gelation stage demonstrated the best performance. The selectivity of these samples reaches values of more than 90% over a fairly ide temperature range, with the productivity reaching 480 g/kg cat center dot h at 300 degrees C.

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