A high pressure kinetic study was carried out in a wide range of operating conditions to study the effects of pressure, temperature, fuel concentration and equivalence ratio on the catalytic combustion of methane, hydrogen and carbon monoxide over a perovskite-based catalyst. A plate type reactor configuration was chosen. This geometry allowed working in a kinetic control avoiding mass transfer limitations if appropriate experimental conditions are chosen. Since especially for GT application it is important to study the ignition phenomenon, which results to be ruled by kinetics, the study of the kinetics of CH4, H2 and CO catalytic combustion was carried out in a range of temperature consistent with the ignition temperatures and global reac...
The effect of the CO2 content (up to 30%) on the methane catalytic combustion over a perovskyte-base...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
The transient behaviour of perovskite-based catalysts prepared via active phase dispersion on La/g-A...
A high pressure kinetic study was carried out in a wide range of operating conditions to study the e...
The study of catalyst behavior at pressure up to 12 bar during CH4, H2, CO and their mixtures combus...
AbstractIn this work, tests of catalytic combustion of CH4 enriched syngas are carried out at high p...
The effect of the addition of a second fuel such as CO, C3H8 or H2 on the catalytic combustion of me...
This work deals with the experimental study of transient ignition during high-pressure combustion of...
Catalytic combustion has been extensively studied as an alternative route to homogeneous combustion ...
This work focuses on the thermal management of a monolithic reactor for catalytic combustion of meth...
In the present work, we report experimental results for the behaviour of a LaMnO3-based honeycomb in...
The catalytic combustion of methane/air mixtures is investigated experimentally and numerically at g...
The transient behaviour of perovskite-based catalysts prepared via active phase dispersion on La|γ-A...
The effect of the CO2 content (up to 30%) on the methane catalytic combustion over a perovskyte-base...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
The transient behaviour of perovskite-based catalysts prepared via active phase dispersion on La/g-A...
A high pressure kinetic study was carried out in a wide range of operating conditions to study the e...
The study of catalyst behavior at pressure up to 12 bar during CH4, H2, CO and their mixtures combus...
AbstractIn this work, tests of catalytic combustion of CH4 enriched syngas are carried out at high p...
The effect of the addition of a second fuel such as CO, C3H8 or H2 on the catalytic combustion of me...
This work deals with the experimental study of transient ignition during high-pressure combustion of...
Catalytic combustion has been extensively studied as an alternative route to homogeneous combustion ...
This work focuses on the thermal management of a monolithic reactor for catalytic combustion of meth...
In the present work, we report experimental results for the behaviour of a LaMnO3-based honeycomb in...
The catalytic combustion of methane/air mixtures is investigated experimentally and numerically at g...
The transient behaviour of perovskite-based catalysts prepared via active phase dispersion on La|γ-A...
The effect of the CO2 content (up to 30%) on the methane catalytic combustion over a perovskyte-base...
Methane oxidation at high pressures and intermediate temperatures was investigated in a laminar flow...
The transient behaviour of perovskite-based catalysts prepared via active phase dispersion on La/g-A...