Copper-silica nanocomposite catalysts with a uniform Cu dispersion prepared by a precipitation-gel method have been found to be highly efficient in the heterogeneous catalytic hydrogenation of CO2-derived cyclic carbonates, providing an indirect but practical approach for the transformation of CO2 to methanol with the co-production of diols under relatively mild conditions. The catalysts possessed remarkable stability in both batch and fixed-bed continuous flow reactors especially after promotion with B2O3. The reaction was found to depend sensitively on the Cu particle size, the surface acidity-basicity and the Cu valence of the catalysts. The synergetic effect between balanced Cu-0 and Cu+ sites was considered to play a critical role in a...
A series of novel bimetallic copper/zirconia carbon nanofibers supported catalysts with different Cu...
The preparation of copper‐based heterogeneous catalysts dedicated to the hydrogenation of CO2 to met...
The suitability of a commercial and industrially applied Cu-based catalyst for the synthesis of meth...
The hydrogenation of ethylene carbonate to co-produce commodity methanol and ethylene glycol has att...
A series of mono- and bi-metallic copper and iron samples were prepared by impregnation method on mi...
AbstractWe have performed R&D project on methanol synthesis from CO2 and hydrogen in order to contri...
Methanol synthesized from carbonate hydrogenation is of great importance for CO2 utilization indirec...
Cu/CeO<sub>2</sub> works as an effective heterogeneous catalyst for hydrogenation of dimethyl carbon...
The production of methanol from CO2 hydrogenation is a promising potential route to a renewable liqu...
The preparation of copper‐based heterogeneous catalysts dedicated to the hydrogenation of CO2 to met...
The synthesis of sustainable methanol and ethylene glycol (EG) via hydrogenation of ethylene carbona...
This article describes the synthesis of methanol by the direct hydrogenation of CO2 over Cu/ZrO2 cat...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
The efficient synthesis of methanol and ethylene glycol via the chemoselective hydrogenation of ethy...
The co-production of ethylene glycol and methanol via ethylene carbonate hydrogenation derived from ...
A series of novel bimetallic copper/zirconia carbon nanofibers supported catalysts with different Cu...
The preparation of copper‐based heterogeneous catalysts dedicated to the hydrogenation of CO2 to met...
The suitability of a commercial and industrially applied Cu-based catalyst for the synthesis of meth...
The hydrogenation of ethylene carbonate to co-produce commodity methanol and ethylene glycol has att...
A series of mono- and bi-metallic copper and iron samples were prepared by impregnation method on mi...
AbstractWe have performed R&D project on methanol synthesis from CO2 and hydrogen in order to contri...
Methanol synthesized from carbonate hydrogenation is of great importance for CO2 utilization indirec...
Cu/CeO<sub>2</sub> works as an effective heterogeneous catalyst for hydrogenation of dimethyl carbon...
The production of methanol from CO2 hydrogenation is a promising potential route to a renewable liqu...
The preparation of copper‐based heterogeneous catalysts dedicated to the hydrogenation of CO2 to met...
The synthesis of sustainable methanol and ethylene glycol (EG) via hydrogenation of ethylene carbona...
This article describes the synthesis of methanol by the direct hydrogenation of CO2 over Cu/ZrO2 cat...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
The efficient synthesis of methanol and ethylene glycol via the chemoselective hydrogenation of ethy...
The co-production of ethylene glycol and methanol via ethylene carbonate hydrogenation derived from ...
A series of novel bimetallic copper/zirconia carbon nanofibers supported catalysts with different Cu...
The preparation of copper‐based heterogeneous catalysts dedicated to the hydrogenation of CO2 to met...
The suitability of a commercial and industrially applied Cu-based catalyst for the synthesis of meth...