The catalytic activity for dimethyl carbonate formation from carbon dioxide and methanol over mono and bimetallic Cu:Ni supported on activated carbon is presented. Bimetallic catalysts exhibit higher catalytic activity than the monometallic samples, being Cu:Ni-2:1 (molar ratio) the best catalyst; X-Ray diffraction, transmission electron microscopy, and metal dispersion analysis provided insight into the improved activity. In situ FT-IR experiments were conducted to investigate the mechanism of formation of dimethyl carbonate from methanol and carbon dioxide over Cu-Ni:2-1. The kinetics of the direct synthesis of dimethyl carbonate in gas phase over Cu:Ni-2:1 supported on activated carbon catalyst was experimentally investigated at 12 bar a...
The direct synthesis of dimethyl carbonate (DMC) from carbon dioxide and methanol is an atom economi...
Methanation of carbon oxides (CO and CO2) was studied over Ni-based catalysts supported on CeO2, Al2...
The use of CO2 to produce methanol is a reaction of growing interest, where bimetallic Cu-M catalyst...
Conversion of carbon dioxide into useful chemicals is a valuable task. One way to perform it is to t...
The synthesis of Cu-Ni bimetallic catalyst supported on pellets of activated carbon using carboxymet...
10.1016/S1004-9541(12)60417-0Chinese Journal of Chemical Engineering205906-913CJCE
Alkali-adopted Cu-Ni/diatomite catalysts were designed and used for the direct synthesis of dimethyl...
Synthesis of dimethyl carbonate (DMC) from CO2 and methanol under milder reaction conditions was per...
The reaction of carbon dioxide transformation is tremendously interesting in research societies from...
In this study we investigate the synthesis of nickel and copper catalyst supported on silica for CO2...
The steady-state rates of simultaneous carbon formation and methanation on silica-supported nickel a...
Ce0.5Zr0.5O2 and gamma-Al2O3 supported nickel catalysts were investigated for CO2 adsorption and met...
ABSTRACT: Direct synthesis of dimethyl carbonate (DMC) and diethyl carbonate (DEC) from CO2 and alco...
Carbon deposition on Ni-based catalysts has a significant influence on their cracking activity and s...
The reactivity of Co1.5PW12O40 in the direct synthesis of dimethyl carbonate (DMC) from CO2 and CH3O...
The direct synthesis of dimethyl carbonate (DMC) from carbon dioxide and methanol is an atom economi...
Methanation of carbon oxides (CO and CO2) was studied over Ni-based catalysts supported on CeO2, Al2...
The use of CO2 to produce methanol is a reaction of growing interest, where bimetallic Cu-M catalyst...
Conversion of carbon dioxide into useful chemicals is a valuable task. One way to perform it is to t...
The synthesis of Cu-Ni bimetallic catalyst supported on pellets of activated carbon using carboxymet...
10.1016/S1004-9541(12)60417-0Chinese Journal of Chemical Engineering205906-913CJCE
Alkali-adopted Cu-Ni/diatomite catalysts were designed and used for the direct synthesis of dimethyl...
Synthesis of dimethyl carbonate (DMC) from CO2 and methanol under milder reaction conditions was per...
The reaction of carbon dioxide transformation is tremendously interesting in research societies from...
In this study we investigate the synthesis of nickel and copper catalyst supported on silica for CO2...
The steady-state rates of simultaneous carbon formation and methanation on silica-supported nickel a...
Ce0.5Zr0.5O2 and gamma-Al2O3 supported nickel catalysts were investigated for CO2 adsorption and met...
ABSTRACT: Direct synthesis of dimethyl carbonate (DMC) and diethyl carbonate (DEC) from CO2 and alco...
Carbon deposition on Ni-based catalysts has a significant influence on their cracking activity and s...
The reactivity of Co1.5PW12O40 in the direct synthesis of dimethyl carbonate (DMC) from CO2 and CH3O...
The direct synthesis of dimethyl carbonate (DMC) from carbon dioxide and methanol is an atom economi...
Methanation of carbon oxides (CO and CO2) was studied over Ni-based catalysts supported on CeO2, Al2...
The use of CO2 to produce methanol is a reaction of growing interest, where bimetallic Cu-M catalyst...