Utilization of hydrogen gas (and carbon dioxide) from methanol steam reforming reaction directly without CO post-treatment to supply proton exchange membrane fuel cells for mobile applications is an attractive option. CuZnGaOx based mixed oxides prepared by co-precipitation are found to be active as catalysts for the reforming reaction. It is also found that the use of lower temperature and a faster substrate flow rate with a shorter contact time with the catalyst bed can significantly reduce the CO level in the product gas stream. At 150 °C this class of oxides gives a decent methanol conversion but can also totally suppress the CO production at a short contact time, which is in a sharp contrast with conventional CuZnOx based catalysts tha...
Production of H-2 from methanol oxidative steam reforming (OSRM) over Zn-Cr, high or low Cu-loading ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
Methanol steam reforming (MSR) is an attractive source of nearly-CO-free H2 for fuel cells. However ...
A series of CuCoZnAl-multicomponent mixed oxide catalysts with various Cu/Co atomic ratios were prep...
Cu/ZnO/Al2O3 catalysts derived from a hydrotalcite precursor were studied for oxidative steam reform...
Results concerning the coupling of the steam reforming (SR) and total oxidation (TOX) of methanol in...
Steam reforming of methanol (SRM) was investigated over copper-containing catalysts supported on fou...
Production of H2 from methanol by steam reforming, partial oxidation, or a combination thereof was s...
Hydrogen production through methanol reforming processes has been stimulated over the years due to i...
Hydrogen production by steam reforming of methanol and ethanol is studied over a series of Cu/ZnO/Al...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
A new class of copper, zinc, and gallium mixed oxides (CuZnGaOx) with different chemical composition...
Methanol steam reforming is a promising technology for producing hydrogen for onboard fuel cell appl...
Production of hydrogen by methanol steam reforming has been studied over a series of Cu/ZrO2 catalys...
This study showed that a ZnO-Cr2O3/CeO2-ZrO2/Al2O3 (Zn-Cr) catalyst was a promising catalyst for hyd...
Production of H-2 from methanol oxidative steam reforming (OSRM) over Zn-Cr, high or low Cu-loading ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
Methanol steam reforming (MSR) is an attractive source of nearly-CO-free H2 for fuel cells. However ...
A series of CuCoZnAl-multicomponent mixed oxide catalysts with various Cu/Co atomic ratios were prep...
Cu/ZnO/Al2O3 catalysts derived from a hydrotalcite precursor were studied for oxidative steam reform...
Results concerning the coupling of the steam reforming (SR) and total oxidation (TOX) of methanol in...
Steam reforming of methanol (SRM) was investigated over copper-containing catalysts supported on fou...
Production of H2 from methanol by steam reforming, partial oxidation, or a combination thereof was s...
Hydrogen production through methanol reforming processes has been stimulated over the years due to i...
Hydrogen production by steam reforming of methanol and ethanol is studied over a series of Cu/ZnO/Al...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
A new class of copper, zinc, and gallium mixed oxides (CuZnGaOx) with different chemical composition...
Methanol steam reforming is a promising technology for producing hydrogen for onboard fuel cell appl...
Production of hydrogen by methanol steam reforming has been studied over a series of Cu/ZrO2 catalys...
This study showed that a ZnO-Cr2O3/CeO2-ZrO2/Al2O3 (Zn-Cr) catalyst was a promising catalyst for hyd...
Production of H-2 from methanol oxidative steam reforming (OSRM) over Zn-Cr, high or low Cu-loading ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
Methanol steam reforming (MSR) is an attractive source of nearly-CO-free H2 for fuel cells. However ...