A Flow Reactor Study of the Oxidation of n-Octane and Iso-Octane
- 20 February 1986
- journal article
- research article
- Published by Taylor & Francis in Combustion Science and Technology
- Vol. 45 (3-4), 199-212
- https://doi.org/10.1080/00102208608923850
Abstract
An experimental study has heen conducted in a flow reactor on the oxidation of n-ocltane and iso-octane at 1080 K, one atmosphere pressure and equivalence ratio equal to one. It was found that (despite similar ratios of initial fuel decay) the conversion of the reaction intermediates to CO and COa is much slower during the oxidation of iso-octane than n-octane. Iso-octane produced primarily iso-butylene and propylene as intermediate hydrocarbons whereas n-octane oxidation resulted primarily in the formation or ethne. Both the nature of the intermediates formed from each fuel and the relative rates of oxidation of the intermediates were shown to be related to the number of primary, secondary and tertiary H atoms present in the initial fuel. The basic chemistry revealed by the flow reactor experiments is suggestive of new insights into the chemical phenomena pertinent to knock in spark ignition engines.Keywords
This publication has 14 references indexed in Scilit:
- Some interpretive aspects of elementary sensitivity gradients in combustion kinetics modelingCombustion and Flame, 1985
- The high temperature oxidation of the methyl side chain of tolueneInternational Journal of Chemical Kinetics, 1984
- Chemical kinetic modeling of hydrocarbon combustionProgress in Energy and Combustion Science, 1984
- The rate constant for t‐C4H9 → H + i‐C4H8 and the thermodynamic parameters of t‐C4H9International Journal of Chemical Kinetics, 1981
- The autoignition of hydrocarbon fuels at high temperatures and pressures—Fitting of a mathematical modelCombustion and Flame, 1977
- Identity scrambling and isomerization networks in systems of excited alkyl radicalsThe Journal of Physical Chemistry, 1972
- Auto-ignition of hydrocarbons behind reflected shock wavesCombustion and Flame, 1972
- Investigation of N2H4 and H2O2 decomposition in low and high pressure shock wavesSymposium (International) on Combustion, 1969
- Preflame Oxidation of Hydrocarbons in a Motored EngineIndustrial & Engineering Chemistry, 1954
- Knocking Characteristics of HydrocarbonsIndustrial & Engineering Chemistry, 1948