The kinetics of oxidation of ethanol−gasoline surrogate mixtures (85−15 vol %) was studied using a fused silica jet-stirred reactor. One representative of each class constituting E85 gasoline was selected. These constituents were iso-octane, toluene, 1-hexene, and ethanol. The experiments were performed in the temperature range of 770−1220 K, at 10 atm, at four equivalence ratios (0.3, 0.6, 1, and 2), and with an initial fuel concentration of 0.2 mol %. A detailed kinetic scheme resulting from the merging of validated kinetic schemes for the oxidation of the components of the present E85 surrogate (gasoline surrogate and ethanol) was used. Good agreement between the experimental results and the computations was observed under the present JS...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
The requirements for improving the efficiency of internal combustion engines and reducing emissions ...
A fused silica jet-stirred reactor (JSR) was used to study the kinetics of oxidation of M85 surrogat...
The kinetic characterization of the oxidation of ethanol–gasoline mixtures is of interest due mainly...
The oxidation of a commercial diesel fuel and a diesel surrogate fuel (70% <i>n</i>-decane/30% 1-met...
Recent decades have seen increasingly restrictive regulations applied to gasoline engines. Gasoline ...
The kinetics of oxidation of 1-butanol/<i>n-</i>heptane mixtures (20/80 and 50/50 in mol) was studie...
The main objectives of this research consist in achieving both experimental and numerical studies of...
Isoamyl alcohol (isopentanol or 3-methylbutan-1-ol) that can be biologically produced is among the p...
New experimental results were obtained to better characterize and understand the oxidation and combu...
There is growing interest for using butanol−biodiesel fuel blends in diesel engines, but neither kin...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
The requirements for improving the efficiency of internal combustion engines and reducing emissions ...
A fused silica jet-stirred reactor (JSR) was used to study the kinetics of oxidation of M85 surrogat...
The kinetic characterization of the oxidation of ethanol–gasoline mixtures is of interest due mainly...
The oxidation of a commercial diesel fuel and a diesel surrogate fuel (70% <i>n</i>-decane/30% 1-met...
Recent decades have seen increasingly restrictive regulations applied to gasoline engines. Gasoline ...
The kinetics of oxidation of 1-butanol/<i>n-</i>heptane mixtures (20/80 and 50/50 in mol) was studie...
The main objectives of this research consist in achieving both experimental and numerical studies of...
Isoamyl alcohol (isopentanol or 3-methylbutan-1-ol) that can be biologically produced is among the p...
New experimental results were obtained to better characterize and understand the oxidation and combu...
There is growing interest for using butanol−biodiesel fuel blends in diesel engines, but neither kin...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
A semi-detailed chemical mechanism for combustion of gasoline-ethanol blends, which is based on sub-...
The requirements for improving the efficiency of internal combustion engines and reducing emissions ...