International audienceThe selective non-catalytic reduction of NO by ammonia (SNCR) has been extensively studied but no activation of ammonia oxidation by nitric oxide had been reported. Experiments performed in a jet-stirred reactor (JSR) at atmospheric pressure for various equivalence ratios (0.1–2) and initial concentrations of NH3 (500 to 1000 ppm) and NO (0 to 1000 ppm) revealed kinetic interactions similar to the so-called mutual sensitization of the oxidation of hydrocarbons and NO. The experiments were performed at fixed residence times of 100 and 200 ms, and variable temperature ranging from 1100 to 1450 K. Kinetic reaction mechanisms were used to simulate these experiments and ammonia oxidation. The most reliable model from the li...
The use of hydrogen peroxide (H2O2) to enhance the oxidation of nitric oxide (NO) under postflame co...
A reduced chemical kinetic mechanism for the prediction of selective non-catalytic reduction (SNCR) ...
We have begun an effort to accurately model NO, formation from the combustion of coal-derived fuels ...
International audienceThe selective non-catalytic reduction of NO by ammonia (SNCR) has been extensi...
A complete understanding of the mechanism of ammonia pyrolysis and oxidation in the full range of op...
This work introduces a newly developed reaction mechanism for the oxidation of ammonia in freely pro...
International audienceThis work introduces a newly developed reaction mechanism for the oxidation of...
The increasing interest towards renewable, and more sustainable energy sources imposes a widerange a...
This work introduces a newly developed reaction mechanism for the oxidation of ammonia in freely pro...
The interaction between NO (0.01 to 200 ppm) and n-butane (50 to 600 ppm) in air has been investigat...
A combination of flow reactor experiments and detailed kinetic modeling was used to study the select...
A global kinetic model which describes H2-assisted NH3-SCR over an Ag/Al2O3 monolith catalyst has be...
The interaction between ammonia and NO under combustion conditions is analyzed in the present work, ...
The mutual oxidation of n-pentane and NO₂ at 500–1000 K has been studied at equivalence ratios of 0....
It is shown how the deactivation of a diesel SCR (Selective Catalytic Reduction) catalyst by compoun...
The use of hydrogen peroxide (H2O2) to enhance the oxidation of nitric oxide (NO) under postflame co...
A reduced chemical kinetic mechanism for the prediction of selective non-catalytic reduction (SNCR) ...
We have begun an effort to accurately model NO, formation from the combustion of coal-derived fuels ...
International audienceThe selective non-catalytic reduction of NO by ammonia (SNCR) has been extensi...
A complete understanding of the mechanism of ammonia pyrolysis and oxidation in the full range of op...
This work introduces a newly developed reaction mechanism for the oxidation of ammonia in freely pro...
International audienceThis work introduces a newly developed reaction mechanism for the oxidation of...
The increasing interest towards renewable, and more sustainable energy sources imposes a widerange a...
This work introduces a newly developed reaction mechanism for the oxidation of ammonia in freely pro...
The interaction between NO (0.01 to 200 ppm) and n-butane (50 to 600 ppm) in air has been investigat...
A combination of flow reactor experiments and detailed kinetic modeling was used to study the select...
A global kinetic model which describes H2-assisted NH3-SCR over an Ag/Al2O3 monolith catalyst has be...
The interaction between ammonia and NO under combustion conditions is analyzed in the present work, ...
The mutual oxidation of n-pentane and NO₂ at 500–1000 K has been studied at equivalence ratios of 0....
It is shown how the deactivation of a diesel SCR (Selective Catalytic Reduction) catalyst by compoun...
The use of hydrogen peroxide (H2O2) to enhance the oxidation of nitric oxide (NO) under postflame co...
A reduced chemical kinetic mechanism for the prediction of selective non-catalytic reduction (SNCR) ...
We have begun an effort to accurately model NO, formation from the combustion of coal-derived fuels ...