By use of operando spectroscopies under cycling reaction conditions, water is shown to hamper the redox dynamics of realistic palladium oxide nanoparticles dispersed onto alumina and hydrophobic zeolite supports thereby lowering the activity for total oxidation of methane. Water adsorption forms hydroxyl ad-species that block the methane and oxygen dissociation and seem to prevent lattice oxygen to take part in the methane oxidation. The main catalytic action is thus proposed to shift from the Mars-van Krevelen mechanism in dry conditions to a slower route that relies on Langmuir-Hinshelwood type of steps in wet conditions. This key finding has clear implications on catalyst design for low-temperature gas combustion emission control
Palladium-based catalysts supported on metal oxides are attractive for methane combustion at low tem...
The substantial increase in greenhouse gases in the atmosphere has been linked to global warming. Al...
Catalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen coating,...
The catalytic activity for dry and wet methane oxidation over a series of palladium–alumina catalyst...
Abatement of the strong greenhouse gas methane in vehicle applications by use of catalytic end-of-pi...
Implementation of methane rich fuels as to develop sustainable vehicle transports requires improved ...
In this study, the effect of oxygen concentration and the presence of water on methane oxidation wer...
Supported palladium catalysts are the most active ones toward the complete oxidation of methane. How...
The use of methane-based fuels, such as natural gas and biogas, gives lower emissions of for instanc...
Time-resolved in situ energy-dispersive X-ray absorption spectroscopy and mass spectrometry are used...
NSERCPeer ReviewedThe addition of platinum to palladium is known to provide bimetallic catalysts tha...
It is well-known that water has a detrimental effect on the low-temperature methane combustion activ...
In situ diffuse reflectance infrared Fourier transform spectroscopy has been used to distinguish sur...
We communicate experimental results for the oxidation of methane by oxygen over alumina supported Pd...
One of the main issues for the catalytic abatement of methane from natural gas fueled vehicles over ...
Palladium-based catalysts supported on metal oxides are attractive for methane combustion at low tem...
The substantial increase in greenhouse gases in the atmosphere has been linked to global warming. Al...
Catalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen coating,...
The catalytic activity for dry and wet methane oxidation over a series of palladium–alumina catalyst...
Abatement of the strong greenhouse gas methane in vehicle applications by use of catalytic end-of-pi...
Implementation of methane rich fuels as to develop sustainable vehicle transports requires improved ...
In this study, the effect of oxygen concentration and the presence of water on methane oxidation wer...
Supported palladium catalysts are the most active ones toward the complete oxidation of methane. How...
The use of methane-based fuels, such as natural gas and biogas, gives lower emissions of for instanc...
Time-resolved in situ energy-dispersive X-ray absorption spectroscopy and mass spectrometry are used...
NSERCPeer ReviewedThe addition of platinum to palladium is known to provide bimetallic catalysts tha...
It is well-known that water has a detrimental effect on the low-temperature methane combustion activ...
In situ diffuse reflectance infrared Fourier transform spectroscopy has been used to distinguish sur...
We communicate experimental results for the oxidation of methane by oxygen over alumina supported Pd...
One of the main issues for the catalytic abatement of methane from natural gas fueled vehicles over ...
Palladium-based catalysts supported on metal oxides are attractive for methane combustion at low tem...
The substantial increase in greenhouse gases in the atmosphere has been linked to global warming. Al...
Catalytic oxidations of methane over palladium-based nanoparticles, with and without oxygen coating,...