Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry and bi-reforming of methane reactions (DRM and BRM, respectively). Nickel based catalysts (10 wt.%) supported on alumina (Al2O3) have shown no exception in this study, but can be improved by the addition of tin and ceria. The effect of two different Sn loadings on this base have been examined for the DRM reaction over 20 h, before selecting the most appropriate Sn/Ni ratio and promoting the alumina base with 20 wt.% of CeO2. This catalyst then underwent activity measurements over a range of temperatures and space velocities, before undergoing experimentation in BRM. It not only showed good levels of conversions for DRM, but exhibited stable co...
Steam reforming of methane (SRM) and dry reforming of methane (DRM) are frequently used in the produ...
A bimetallic Ni-Co catalyst supported on MSN (Ni-Co/MSN) was prepared by consecutive in situ electro...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
The dry reforming of methane with CO2 is a common route to transform CO2/CH4 mixtures into added val...
The dry reforming of methane with CO is a common route to transform CO/CH mixtures into added value ...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
New processes that may reduce the net carbon emissions and contribute to a more circular economy are...
The chemical recycling of greenhouse gas CO2 produced in hydrocarbon combustion is an attractive alt...
Biogas is a renewable, as well as abundant, fuel source which can be utilised in the production of h...
The chemical recycling of greenhouse gas CO2 produced in hydrocarbon combustion is an attractive alt...
Biogas produced by the anaerobic digestion of biomass can be exploited directly as a fuel for small-...
Steam reforming of methane (SRM) and dry reforming of methane (DRM) are frequently used in the produ...
A bimetallic Ni-Co catalyst supported on MSN (Ni-Co/MSN) was prepared by consecutive in situ electro...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
The dry reforming of methane with CO2 is a common route to transform CO2/CH4 mixtures into added val...
The dry reforming of methane with CO is a common route to transform CO/CH mixtures into added value ...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
New processes that may reduce the net carbon emissions and contribute to a more circular economy are...
The chemical recycling of greenhouse gas CO2 produced in hydrocarbon combustion is an attractive alt...
Biogas is a renewable, as well as abundant, fuel source which can be utilised in the production of h...
The chemical recycling of greenhouse gas CO2 produced in hydrocarbon combustion is an attractive alt...
Biogas produced by the anaerobic digestion of biomass can be exploited directly as a fuel for small-...
Steam reforming of methane (SRM) and dry reforming of methane (DRM) are frequently used in the produ...
A bimetallic Ni-Co catalyst supported on MSN (Ni-Co/MSN) was prepared by consecutive in situ electro...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...