A detailed chemical kinetic modeling has been developed to investigate aromatic and first polyaromatic hydrocarbons formation pathways in sooting methane premixed flames operating at two equivalence ratios (2.05; 2.32) and various pressures (0.211- 0.263 atm). The model validation is performed by comparing modeled and quantitative experimental profiles of low molecular weight aromatic species ranging from benzene to pyrene. Experiments were carried out using jet-cooled laser-induced fluorescence performed after microprobe sampling. Temperature profiles were obtained using two-line atomic fluorescence (TLAF). The kinetic mechanism proposed in this work is an extension of our previous mechanism validated on a large number of reactive systems ...
Due to the complexity of the fluid dynamics and non-linear reactions in the combustion zone, a simpl...
Soot particles formed and emitted from (e.g.) direct-injected diesel engines are dangerous to human ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
A detailed chemical kinetic modeling has been developed to investigate aromatic and first polyaromat...
Combustion of hydrocarbon fuels is a major source of pollutants, causing adverse effects to environm...
The primary objective of the present work is to collect and review the vast amount of experimental d...
Experimental and detailed chemical kinetic modeling has been performed to investigate aromatic and p...
Polycyclic aromatic hydrocarbons (PAHs) are considered important soot precursors. Exploring and unde...
Flames that have an excess of fuel, compared to the stoichiometry, or where the mixing between fuel ...
Journal ArticleThe Utah Surrogate Mechanism was used to model a fuel-rich, non-sooting premixed lami...
Combustion of hydrocarbons inadvertently produces soot which has detrimental effects on both health ...
Polycyclic aromatic hydrocarbons (PAHs) are known precursors of harmful carbonaceous particles. Accu...
The gas-to-particle transition is a critical and hitherto poorly understood aspect in carbonaceous s...
Polycyclic Aromatic Hydrocarbons (PAHs) are harmful by-products formed during combustion of hydrocar...
Modeling combustion of transportation fuels remains a difficult task due to the extremely large numb...
Due to the complexity of the fluid dynamics and non-linear reactions in the combustion zone, a simpl...
Soot particles formed and emitted from (e.g.) direct-injected diesel engines are dangerous to human ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
A detailed chemical kinetic modeling has been developed to investigate aromatic and first polyaromat...
Combustion of hydrocarbon fuels is a major source of pollutants, causing adverse effects to environm...
The primary objective of the present work is to collect and review the vast amount of experimental d...
Experimental and detailed chemical kinetic modeling has been performed to investigate aromatic and p...
Polycyclic aromatic hydrocarbons (PAHs) are considered important soot precursors. Exploring and unde...
Flames that have an excess of fuel, compared to the stoichiometry, or where the mixing between fuel ...
Journal ArticleThe Utah Surrogate Mechanism was used to model a fuel-rich, non-sooting premixed lami...
Combustion of hydrocarbons inadvertently produces soot which has detrimental effects on both health ...
Polycyclic aromatic hydrocarbons (PAHs) are known precursors of harmful carbonaceous particles. Accu...
The gas-to-particle transition is a critical and hitherto poorly understood aspect in carbonaceous s...
Polycyclic Aromatic Hydrocarbons (PAHs) are harmful by-products formed during combustion of hydrocar...
Modeling combustion of transportation fuels remains a difficult task due to the extremely large numb...
Due to the complexity of the fluid dynamics and non-linear reactions in the combustion zone, a simpl...
Soot particles formed and emitted from (e.g.) direct-injected diesel engines are dangerous to human ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...