International audienceThe design of innovative combustion processes relies on a comprehensive understanding of biodiesel oxidation kinetics. The present study aims at unraveling the reaction mechanism involved in the epoxidation of a realistic biodiesel surrogate, methyl trans-3-hexenoate, by hydroperoxy radicals using a bottom-up theoretical kinetics methodology. The obtained rate constants are in good agreement with experimental data for alkene epoxidation by HO2. The impact of temperature and pressure on epoxidation pathways involving H-bonded and non-H-bonded conformers was assessed. The obtained rate constant was finally implemented into a state-of-the-art detailed combustion mechanism, resulting in fairly good agreement with engine ex...
Small esters represent an important class of high octane biofuels for advanced spark ignition engine...
In times where the attention on alternative energy sources is continuously increasing, the study of ...
Biodiesel represents a possible substitute to the fossil fuels; for this reason a good comprehension...
The design of innovative combustion processes relies on a comprehensive understanding of biodiesel o...
In an attempt to construct detailed kinetic mechanisms for biodiesel fuels on the fly, high-pressure...
This paper presents a computational study on the low-temperature mechanism and kinetics of the react...
Combustion of renewable biofuels, including energydense biodiesel, is expected to contribute signifi...
Methyl oleate is a long chain methyl ester and a major constituent of rapeseed-oil derived biodiesel...
The kinetics of hydrogen abstraction by five radicals (H, O(<sup>3</sup><i>P</i>), OH, CH<sub>3</su...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of methyl d...
Advances in computational modeling tools have allowed for the construction of detailed chemical mode...
Thermodynamic properties and detailed chemical kinetic models have been developed for the combustion...
International audienceThe oxidation of three C19 fatty acid methyl esters present in biodiesel fuel ...
The paper discusses in detail the first stage of the catalytic oxidation of fatty acid methyl esters...
The aim of this work is to discuss a lumped approach to the kinetic modeling of the pyrolysis and ox...
Small esters represent an important class of high octane biofuels for advanced spark ignition engine...
In times where the attention on alternative energy sources is continuously increasing, the study of ...
Biodiesel represents a possible substitute to the fossil fuels; for this reason a good comprehension...
The design of innovative combustion processes relies on a comprehensive understanding of biodiesel o...
In an attempt to construct detailed kinetic mechanisms for biodiesel fuels on the fly, high-pressure...
This paper presents a computational study on the low-temperature mechanism and kinetics of the react...
Combustion of renewable biofuels, including energydense biodiesel, is expected to contribute signifi...
Methyl oleate is a long chain methyl ester and a major constituent of rapeseed-oil derived biodiesel...
The kinetics of hydrogen abstraction by five radicals (H, O(<sup>3</sup><i>P</i>), OH, CH<sub>3</su...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of methyl d...
Advances in computational modeling tools have allowed for the construction of detailed chemical mode...
Thermodynamic properties and detailed chemical kinetic models have been developed for the combustion...
International audienceThe oxidation of three C19 fatty acid methyl esters present in biodiesel fuel ...
The paper discusses in detail the first stage of the catalytic oxidation of fatty acid methyl esters...
The aim of this work is to discuss a lumped approach to the kinetic modeling of the pyrolysis and ox...
Small esters represent an important class of high octane biofuels for advanced spark ignition engine...
In times where the attention on alternative energy sources is continuously increasing, the study of ...
Biodiesel represents a possible substitute to the fossil fuels; for this reason a good comprehension...