The reaction rate of low-temperature steam reforming was studied over two Ni-based catalysts. Experimental tests were carried out for temperatures between 400 and 550 °C and pressures between 1 and 7 bar, using methane and simulated biogas (1:1 methane-carbon dioxide mixture) as carbonaceous feed. The results were analyzed with a simplified reaction rate expression. The parameters of such expression were optimized in order to provide a tool for the design of an industrial scale reactor using the catalysts considered
Biogas is an important source of renewable energy produced by the anaerobic digestion of biomass. Th...
In the search for active and stable Ni-based catalysts for steam methane reforming in membrane react...
Ni catalysts on La-promoted MgO/Al2O3 supports with spinel structure exhibit sufficient activity for...
The reaction rate of low-temperature steam reforming was studied over two Ni-based catalysts. Experi...
Low temperature methane steam reforming for hydrogen production, using experimental developed Ni/Al2...
Kinetics of methane steam reforming over a commercial nickel-based catalyst and over an innovative r...
An experimental and kinetic modeling study on the Ni-catalyzed conversion of methane under oxidative...
Although the catalytic steam reforming of hydrocarbon for synthesis gas production is often carried ...
From an examination of the literature relating to the catalytic steam reforming of hydrocarbons, it ...
The effect of Ni loading on the catalytic activity of Ni/ZrO2 catalyst for methane steam reforming w...
Methane reforming reactions are important routes for the production of synthesis gas (H2 and CO). In...
An experimental and kinetic modeling study on the Ni-catalyzed conversion of methane under oxidative...
grantor: University of TorontoThe kinetics of the steam reforming of methane over perovski...
CH4 and CO2 are the two most abundant greenhouse gas emissions which are responsible for global warm...
Steam reforming of light hydrocarbons provides a promising method for hydrogen production. Ni-based ...
Biogas is an important source of renewable energy produced by the anaerobic digestion of biomass. Th...
In the search for active and stable Ni-based catalysts for steam methane reforming in membrane react...
Ni catalysts on La-promoted MgO/Al2O3 supports with spinel structure exhibit sufficient activity for...
The reaction rate of low-temperature steam reforming was studied over two Ni-based catalysts. Experi...
Low temperature methane steam reforming for hydrogen production, using experimental developed Ni/Al2...
Kinetics of methane steam reforming over a commercial nickel-based catalyst and over an innovative r...
An experimental and kinetic modeling study on the Ni-catalyzed conversion of methane under oxidative...
Although the catalytic steam reforming of hydrocarbon for synthesis gas production is often carried ...
From an examination of the literature relating to the catalytic steam reforming of hydrocarbons, it ...
The effect of Ni loading on the catalytic activity of Ni/ZrO2 catalyst for methane steam reforming w...
Methane reforming reactions are important routes for the production of synthesis gas (H2 and CO). In...
An experimental and kinetic modeling study on the Ni-catalyzed conversion of methane under oxidative...
grantor: University of TorontoThe kinetics of the steam reforming of methane over perovski...
CH4 and CO2 are the two most abundant greenhouse gas emissions which are responsible for global warm...
Steam reforming of light hydrocarbons provides a promising method for hydrogen production. Ni-based ...
Biogas is an important source of renewable energy produced by the anaerobic digestion of biomass. Th...
In the search for active and stable Ni-based catalysts for steam methane reforming in membrane react...
Ni catalysts on La-promoted MgO/Al2O3 supports with spinel structure exhibit sufficient activity for...