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Combustion and Flame(4)
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Effect of fuel flow rate on the characteristics of soot generated from unsubstituted and disubstituted aromatic hydrocarbon flames: Experimental and numerical study
ArticleAbstract: Aromatic hydrocarbons in liquid transportation fuels help in suppressing auto-ignition and knockingPalabras claves:Benzene, EELS, HRTEM, m-Xylene, Nanostructures, Soot, XRDAutores:Anjana T., Joaquin L. Brito, Peña G.D.J.G., Rahman R.K., Raj A., Stephen S.Fuentes:googlescopusEffects of fuel-bound methyl groups and fuel flow rate in the diffusion flames of aromatic fuels on the formation of volatile PAHs
ArticleAbstract: Aromatic hydrocarbons constitute a significant fraction of fossil-derived transportation fuels. TheyPalabras claves:Aromatic fuels, Fuel flow rate, GC-MS, PAH extraction, Priority PAHs, SootAutores:Joaquin L. Brito, Peña G.D.J.G., Pillai V., Raj A.Fuentes:googlescopusEffects of methyl group on aromatic hydrocarbons on the nanostructures and oxidative reactivity of combustion-generated soot
ArticleAbstract: The substituted and unsubstituted aromatic hydrocarbons, present in transportation fuels such as gasPalabras claves:Benzene, m-Xylene, Nanostructures, Oxidative reactivity, Soot, TolueneAutores:Alrefaai M.M., Anjana T., Chung S.H., Guerrero Peña G.D.J., Joaquin L. Brito, Pillai V., Raj A., Shoaibi A.A., Stephen S., Yang S.Y.Fuentes:googlescopusPhysicochemical properties of soot generated from toluene diffusion flames: Effects of fuel flow rate
ArticleAbstract: Aromatic hydrocarbons are commonly found in fossil-derived transportation fuels, and their combustioPalabras claves:FTIR, HRTEM, Nanostructures, Soot, Toluene, XRDAutores:Anjana T., Hammid Y.A.S., Joaquin L. Brito, Peña G.D.J.G., Raj A., Shoaibi A.A., Stephen S.Fuentes:googlescopus