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Volumn 159, Issue 3, 2012, Pages 979-995
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Detailed numerical modeling of PAH formation and growth in non-premixed ethylene and ethane flames
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Author keywords
Counterflow diffusion flame; Ethane; Ethylene; PAH growth; Soot precursor
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Indexed keywords
AROMATIC OXIDATION;
AROMATIC RADICALS;
AROMATIC RINGS;
CHEMICAL KINETIC MECHANISM;
COUNTERFLOW DIFFUSION FLAMES;
CURRENT MECHANISMS;
CYCLOPENTADIENYLS;
DECOMPOSITION REACTION;
DETAILED CHEMICAL KINETIC;
DIFFUSION FLAME;
DIFFUSION SYSTEMS;
EXPERIMENTAL DATA;
EXPERIMENTAL STUDIES;
FLAME PROPERTIES;
FORMATION REACTION;
FREE-RADICAL ADDITION;
FUEL COMBUSTION;
FUEL OXIDATION;
HYDROGEN ATOMS;
KINETIC INVESTIGATIONS;
LAMINAR PREMIXED;
MODELING STUDIES;
NON-PREMIXED;
NUMERICAL MODELING;
OPPOSED FLOW;
PAH GROWTH;
PREMIXED;
PREMIXED FLAME;
PRODUCTION RATES;
REACTION MODEL;
REACTION SCHEMES;
REVERSE REACTIONS;
SIMULATION DATA;
SOOT FORMATIONS;
SOOT INCEPTION;
SOOT MODEL;
SOOT PRECURSOR;
SOOT PRODUCTION;
SPECIES PROFILE;
AROMATIC COMPOUNDS;
AROMATIZATION;
DIFFUSION;
DUST;
ETHANE;
ETHYLENE;
FORECASTING;
FREE RADICALS;
FUELS;
HYDROGEN;
KINETICS;
METHOD OF MOMENTS;
NAPHTHALENE;
REACTION RATES;
SOOT;
STIFFNESS;
COMBUSTION;
ACETYLENE;
ETHANE;
ETHYLENE;
FUEL;
HYDROGEN;
NAPHTHALENE;
PHENANTHRENE;
POLYCYCLIC AROMATIC HYDROCARBON;
PYRENE;
ARTICLE;
CHEMICAL REACTION;
COMBUSTION;
DECOMPOSITION;
EXPERIMENTAL STUDY;
FIRE;
GROWTH;
KINETICS;
OXIDATION;
PRIORITY JOURNAL;
RIGIDITY;
SUBSTITUTION REACTION;
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EID: 84856224091
PISSN: 00102180
EISSN: 15562921
Source Type: Journal
DOI: 10.1016/j.combustflame.2011.10.005 Document Type: Article |
Times cited : (204)
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References (59)
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