Investigation on chemical structures of premixed toluene flames at low pressure
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- Type
- article
- Published
- 2011-01-01
- Cited by
- 123
- References
- 41
- OpenAlex
- https://openalex.org/W2001065826
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96210885
Keywords
Toluene, Chemistry, Flame structure, Mole fraction, Decomposition
References
- A DFT-based investigation of hydrogen abstraction reactions from methylated polycyclic aromatic hydrocarbons.
- Comprehensive handbook of chemical bond energies
- Flame structure and processes
- On the formation and decomposition of C7H8
- Kinetic modeling of soot formation with detailed chemistry and physics: laminar premixed flames of C2 hydrocarbons
- High-temperature reactions of OH radicals with benzene and toluene.
- Recent applications of synchrotron VUV photoionization mass spectrometry: insight into combustion chemistry.
- A noncatalytic coating for platinum-rhodium thermocouples
- Toluene combustion: reaction paths, thermochemical properties, and kinetic analysis for the methylphenyl radical + O2 reaction.
- Investigation on fuel-rich premixed flames of monocyclic aromatic hydrocarbons: Part I. Intermediate identification and mass spectrometric analysis
- Reaction mechanisms for toluene pyrolysis
- A shock tube study of the auto-ignition of toluene/air mixtures at high pressures
- Detailed modeling of PAH and soot formation in a laminar premixed benzene/oxygen/argon low-pressure flame
- Experimental and modeling study of the oxidation of toluene
- Kinetic modeling of the benzyl + HO2 reaction
- Noncatalytic thermocouple coating for low-pressure flames
- Autoignition of gasoline surrogate mixtures at intermediate temperatures and high pressures: Experimental and numerical approaches
- Experimental Study of a Fuel-Rich Premixed Toluene Flame at Low Pressure
- Thermal decomposition of toluene: Overall rate and branching ratio
- Indene formation from alkylated aromatics: kinetics and products of the fulvenallene + acetylene reaction.
Cited by
- Development of a skeletal mechanism for diesel surrogate fuel by using a decoupling methodology
- Experimental and kinetic modeling study of 2,5-dimethylfuran pyrolysis at various pressures
- An experimental and kinetic modeling study of cyclohexane pyrolysis at low pressure
- Experimental and kinetic modeling investigation on laminar premixed benzene flames with various equivalence ratios
- Investigation on the pyrolysis and oxidation of toluene over a wide range conditions. I. Flow reactor pyrolysis and jet stirred reactor oxidation
- A reduced toluene reference fuel chemical kinetic mechanism for combustion and polycyclic-aromatic hydrocarbon predictions
- An experimental and kinetic modeling study of three butene isomers pyrolysis at low pressure
- Investigation on the pyrolysis and oxidation of toluene over a wide range conditions. II. A comprehensive kinetic modeling study
- A chemical mechanism for ignition and oxidation of multi-component gasoline surrogate fuels
- Numerical study of soot formation in laminar coflow diffusion flames of methane doped with primary reference fuels
- Experimental and kinetic modeling study of styrene combustion
- Combustion chemistry probed by synchrotron VUV photoionization mass spectrometry
- Experimental and kinetic modeling study of laminar coflow diffusion methane flames doped with 2-butanol
- Experimental and modelling studies of the effects of methanol and ethanol addition on the laminar premixed low-pressure n-heptane/toluene flames
- Pyrolysis of fulvenallene (C7H6) and fulvenallenyl (C7H5): Theoretical kinetics and experimental product detection
- Development of an n-heptane/toluene/polyaromatic hydrocarbon mechanism and its application for combustion and soot prediction
- Photoionization Mass Spectrometric and Kinetic Modeling of Low‐pressure Pyrolysis of Benzene
- Propagation and extinction of benzene and alkylated benzene flames
- Kinetic modeling study of benzene and PAH formation in laminar methane flames
- Experimental and kinetic modeling study of premixed o-xylene flames
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