Pd/ZnO/Al2O3 catalysts were studied for water-gas-shift (WGS), methanol steam reforming, and reverse-water-gas-shift (RWGS) reactions. WGS activity was found to be dependent on the Pd:Zn ratio with a maximum activity obtained at approximately 0.50, which was comparable to that of a commercial Pt-based catalyst. The catalyst stability was demonstrated for 100 hours time-on-stream at a temperature of 360ºC without evidence of metal sintering. WGS reaction rates were approximately 1st order with respect to CO concentration, and kinetic parameters were determined to be Ea = 58.3 kJ mol-1 and k0 = 6.1x107 min-1. During methanol steam reforming, the CO selectivities were observed to be lower than the calculated equilibrium values over a range of ...
In situ X-ray photoelectron spectroscopy and low-energy ion scattering were used to study the prepar...
The direct hydrogenation of CO2into methanol is crucial for providing a means of CO2fixation and a w...
Recent advancements in fuel cells, known for their high efficiency in converting chemical energy int...
Pd/ZnO/Al2O3 catalysts were studied for water-gas-shift (WGS), methanol steam reforming, and reverse...
ZnO-supported palladium-based catalysts have been shown in recent years to be both active and select...
Addition of Zn to Pd changes its catalytic behavior for steam reforming of methanol. Previous work s...
Pd/Ga2O3 methanol steam reforming (MSR) catalysts were characterized in detail by utilizing a range ...
Proton exchange membrane fuel cell (PEMFC) has been reported as clean and efficient energy technolog...
A number of Pd based materials have been synthesised and evaluated as catalysts for the conversion o...
The effect of reduction temperature of the coprecipitated 15.9 % Pd/ZnO catalyst on the catalytic ac...
Structure, morphology and composition of two Pd/Ga2O3 methanol steam reforming catalysts were correl...
One major drawback in the production of clean hydrogen from methanol is the formation of carbon mono...
Methanol steam (MSR) and autothermal (ATR) reforming reactions have emerged as leading candidates fo...
High-temperature steam reforming of methanol over ZnO-Al2O3 catalystsIn this study, a series of ZnO-...
PdIn near-surface alloy; Pd foil; Methanol dehydrogenation; Methanol steam reforming; Water activati...
In situ X-ray photoelectron spectroscopy and low-energy ion scattering were used to study the prepar...
The direct hydrogenation of CO2into methanol is crucial for providing a means of CO2fixation and a w...
Recent advancements in fuel cells, known for their high efficiency in converting chemical energy int...
Pd/ZnO/Al2O3 catalysts were studied for water-gas-shift (WGS), methanol steam reforming, and reverse...
ZnO-supported palladium-based catalysts have been shown in recent years to be both active and select...
Addition of Zn to Pd changes its catalytic behavior for steam reforming of methanol. Previous work s...
Pd/Ga2O3 methanol steam reforming (MSR) catalysts were characterized in detail by utilizing a range ...
Proton exchange membrane fuel cell (PEMFC) has been reported as clean and efficient energy technolog...
A number of Pd based materials have been synthesised and evaluated as catalysts for the conversion o...
The effect of reduction temperature of the coprecipitated 15.9 % Pd/ZnO catalyst on the catalytic ac...
Structure, morphology and composition of two Pd/Ga2O3 methanol steam reforming catalysts were correl...
One major drawback in the production of clean hydrogen from methanol is the formation of carbon mono...
Methanol steam (MSR) and autothermal (ATR) reforming reactions have emerged as leading candidates fo...
High-temperature steam reforming of methanol over ZnO-Al2O3 catalystsIn this study, a series of ZnO-...
PdIn near-surface alloy; Pd foil; Methanol dehydrogenation; Methanol steam reforming; Water activati...
In situ X-ray photoelectron spectroscopy and low-energy ion scattering were used to study the prepar...
The direct hydrogenation of CO2into methanol is crucial for providing a means of CO2fixation and a w...
Recent advancements in fuel cells, known for their high efficiency in converting chemical energy int...