The process of ethanol dehydrogenation to acetaldehyde upon different copper supported on carbon catalysts has been studied. Different carbon materials – activated carbon Norit, carbon-carbon composite sibunit and activated carbon fibers (ACF) – were used as a support for the catalyst. The BET surface area as well as the porous structure of the materials were determined with the use of N2 adsorption-desorption technique. The catalysts prepared by wetness impregnation contained 5% of Cu. The effect of the carrier texture on the distribution of active metal has been shown using scanning electron microscopy. Copper deposited on ACF was well distributed in comparison with the other supports studied and had an average particle size of 20 nm. Thi...
The development of alternative energy is interesting in the present especially, hydrogen production ...
Abstract The dehydrogenation of ethanol to acetaldehyde (DHEA) is an environmentally benign alternat...
Selective ethanol dehydrogenation to acetaldehyde is an important reaction because acetaldehyde is a...
Copper supported catalysts based on preliminary oxidized carbon fibers have been studied. Nitric aci...
Recently, the interest in ethanol production from renewable natural sources in Thailand has been rec...
Catalysts composed of copper supported on ZnAl2O4 were prepared by conventional impregnation of a co...
The bifunctional nature of Cu---Al2O3-on-carbon catalysts, used in the direct catalytic conversion o...
We report a designed Cu/C/SiO2 composite catalyst, which shows a high acetaldehyde selectivity (up t...
This study focuses on the production of acetaldehyde from ethanol by catalytic dehydrogenation using...
International audienceAcetaldehyde is an important chemical commodity and a building block for produ...
A kinetic study of the ethanol dehydrogenation to ethyl acetate on a copper/copper-chromite catalyst...
In the recent years, the interest in the ethanol production from renewable natural sources, as a pos...
Selective dehydrogenation of ethanol to acetaldehyde has been considered as an important pathway to ...
NiCu alloyed catalysts are investigated for ethanol dehydrogenation. Seven Xwt%Ni-Ywt%Cu/Mg(Al)(Ni)(...
This study focuses on the production of acetaldehyde from ethanol by catalytic dehydrogenation using...
The development of alternative energy is interesting in the present especially, hydrogen production ...
Abstract The dehydrogenation of ethanol to acetaldehyde (DHEA) is an environmentally benign alternat...
Selective ethanol dehydrogenation to acetaldehyde is an important reaction because acetaldehyde is a...
Copper supported catalysts based on preliminary oxidized carbon fibers have been studied. Nitric aci...
Recently, the interest in ethanol production from renewable natural sources in Thailand has been rec...
Catalysts composed of copper supported on ZnAl2O4 were prepared by conventional impregnation of a co...
The bifunctional nature of Cu---Al2O3-on-carbon catalysts, used in the direct catalytic conversion o...
We report a designed Cu/C/SiO2 composite catalyst, which shows a high acetaldehyde selectivity (up t...
This study focuses on the production of acetaldehyde from ethanol by catalytic dehydrogenation using...
International audienceAcetaldehyde is an important chemical commodity and a building block for produ...
A kinetic study of the ethanol dehydrogenation to ethyl acetate on a copper/copper-chromite catalyst...
In the recent years, the interest in the ethanol production from renewable natural sources, as a pos...
Selective dehydrogenation of ethanol to acetaldehyde has been considered as an important pathway to ...
NiCu alloyed catalysts are investigated for ethanol dehydrogenation. Seven Xwt%Ni-Ywt%Cu/Mg(Al)(Ni)(...
This study focuses on the production of acetaldehyde from ethanol by catalytic dehydrogenation using...
The development of alternative energy is interesting in the present especially, hydrogen production ...
Abstract The dehydrogenation of ethanol to acetaldehyde (DHEA) is an environmentally benign alternat...
Selective ethanol dehydrogenation to acetaldehyde is an important reaction because acetaldehyde is a...