NSERCPeer ReviewedThe addition of platinum to palladium is known to provide bimetallic catalysts that are relatively active in lean methane combustion in the presence of water at temperatures below 773 K, which is of practical interest for exhaust treatment from natural gas vehicles. The study provides insight into the wet lean methane combustion mechanism on the Pd–Pt/Al2O3 catalyst via in situ X-ray absorption spectroscopy studies at temperatures 473–873 K. The presence of water leads to an increased fraction of metallic Pd due to the lack of surface oxygen. The fraction of metallic Pd drops as the temperature increases. Oxygen deficit results in Pt atoms available for methane dissociation, which does not occur in the dry methane-lean fee...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
Supported palladium catalysts are the most active ones toward the complete oxidation of methane. How...
NSERCPeer ReviewedThe addition of platinum to palladium is known to provide bimetallic catalysts tha...
NSERCPeer ReviewedPalladium–platinum bimetallic catalysts supported on alumina with palladium/platin...
In this study, the effect of oxygen concentration and the presence of water on methane oxidation wer...
he effect of support material on the catalytic performance for methane combustion has been studied f...
A novel Pd supported on TS-1 combustion catalyst was synthesized and tested in methane combustion un...
Catalytic combustion of ventilation air methane is a potential solution for abatement of this greenh...
It is well-known that water has a detrimental effect on the low-temperature methane combustion activ...
Palladium-based catalysts supported on metal oxides are attractive for methane combustion at low tem...
The catalytic combustion of <1 % methane in air over palladium-based catalysts is investigated. The ...
The influences of residual chlorine ions and water on the performance of it Pd/Al2O3 catalyst in met...
Near-ambient pressure x-ray photoelectron spectroscopy (NAP-XPS) was utilised to understand the rela...
Near ambient pressure x-ray photoelectron spectroscopy (NAP-XPS) was used to study the chemical stat...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
Supported palladium catalysts are the most active ones toward the complete oxidation of methane. How...
NSERCPeer ReviewedThe addition of platinum to palladium is known to provide bimetallic catalysts tha...
NSERCPeer ReviewedPalladium–platinum bimetallic catalysts supported on alumina with palladium/platin...
In this study, the effect of oxygen concentration and the presence of water on methane oxidation wer...
he effect of support material on the catalytic performance for methane combustion has been studied f...
A novel Pd supported on TS-1 combustion catalyst was synthesized and tested in methane combustion un...
Catalytic combustion of ventilation air methane is a potential solution for abatement of this greenh...
It is well-known that water has a detrimental effect on the low-temperature methane combustion activ...
Palladium-based catalysts supported on metal oxides are attractive for methane combustion at low tem...
The catalytic combustion of <1 % methane in air over palladium-based catalysts is investigated. The ...
The influences of residual chlorine ions and water on the performance of it Pd/Al2O3 catalyst in met...
Near-ambient pressure x-ray photoelectron spectroscopy (NAP-XPS) was utilised to understand the rela...
Near ambient pressure x-ray photoelectron spectroscopy (NAP-XPS) was used to study the chemical stat...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
Supported palladium catalysts are the most active ones toward the complete oxidation of methane. How...