High-throughput near-infrared imaging was used to distinguish catalyst activity for low-temperature methane steam-reforming. Geminal hydroxyls of reduced ceria were depicted during methane reforming at 673 K. The changes in absorbance maps under various water partial pressures showed evidence of formate intermediate formations without redox exchanges. Higher resolution was observed in absorbance change images than that of thermal images obtained from catalyst surface self-emissions. The experimental results illustrated higher activity of pure rhodium catalyst than that of bimetallic ones, likely because of the high dispersion of rhodium on the catalyst support. Moreover, the reaction was accelerated when high surface area silica was added b...
Catalysts with platinum dispersed on alumina, ceria and mixed alumina-ceria have been prepared by in...
The goal of this research is to develop catalysts that directly convert methane and light hydrocarbo...
Hydrogen is currently mainly produced via steam reforming of methane (SMR: CH4 + H2O → CO + 3H2). An...
In situ X-ray absorption spectroscopy is a well-suited technique to gain information on the structur...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
AbstractThe performance of ceria supported Rh catalysts prepared with high and low surface areas for...
Catalytic autothermal reforming of methane was studied over a commercial rhodium catalyst as a funct...
An accurate characterization of the rhodium specimen was obtained via FIM experiments. Reaction beha...
This paper presents an experimental study of the catalytic steam reforming of methane over newly dev...
Rh/ceria catalysts were synthesized by flame spray pyrolysis for high temperature water gas shift (W...
In this work, the reforming of model biogas was investigated on a Rh/MgAlO catalyst. In situ transie...
A series of ceria-supported Rh and Pt catalysts was synthesized by flame spray pyrolysis for high te...
The metal–oxide interaction changes the surface electronic states of catalysts deployed for chemical...
Two types of Ru-ceria catalysts were investigated, one prepared by combustion to create an atomicall...
Catalysts with platinum dispersed on alumina, ceria and mixed alumina-ceria have been prepared by in...
The goal of this research is to develop catalysts that directly convert methane and light hydrocarbo...
Hydrogen is currently mainly produced via steam reforming of methane (SMR: CH4 + H2O → CO + 3H2). An...
In situ X-ray absorption spectroscopy is a well-suited technique to gain information on the structur...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
Near-infrared imaging of 2D and 3D spatial resolutions allowed access to behavior of flowing gases a...
AbstractThe performance of ceria supported Rh catalysts prepared with high and low surface areas for...
Catalytic autothermal reforming of methane was studied over a commercial rhodium catalyst as a funct...
An accurate characterization of the rhodium specimen was obtained via FIM experiments. Reaction beha...
This paper presents an experimental study of the catalytic steam reforming of methane over newly dev...
Rh/ceria catalysts were synthesized by flame spray pyrolysis for high temperature water gas shift (W...
In this work, the reforming of model biogas was investigated on a Rh/MgAlO catalyst. In situ transie...
A series of ceria-supported Rh and Pt catalysts was synthesized by flame spray pyrolysis for high te...
The metal–oxide interaction changes the surface electronic states of catalysts deployed for chemical...
Two types of Ru-ceria catalysts were investigated, one prepared by combustion to create an atomicall...
Catalysts with platinum dispersed on alumina, ceria and mixed alumina-ceria have been prepared by in...
The goal of this research is to develop catalysts that directly convert methane and light hydrocarbo...
Hydrogen is currently mainly produced via steam reforming of methane (SMR: CH4 + H2O → CO + 3H2). An...