633 - 633 |
Untitled Dagaut P, Egolfopoulos FN |
634 - 643 |
1-Butanol ignition delay times at low temperatures: An application of the constrained-reaction-volume strategy Zhu YY, Davidson DF, Hanson RK |
644 - 656 |
An experimental and kinetic modeling study of n-propanol and i-propanol ignition at high temperatures Man XJ, Tang CL, Zhang JX, Zhang YJ, Pan L, Huang ZH, Law CK |
657 - 670 |
Experimental and kinetic modeling study of PAH formation in methane coflow diffusion flames doped with n-butanol Jin HF, Cuoci A, Frassoldati A, Farayelli T, Wang YZ, Li YY, Qi F |
671 - 679 |
Sooting behaviors of n-butanol and n-dodecane blends Ghiassi H, Toth P, Lighty JS |
680 - 695 |
Intermediate temperature heat release in an HCCI engine fueled by ethanol/n-heptane mixtures: An experimental and modeling study Vuilleumier D, Kozarac D, Mehl M, Saxena S, Pitz WJ, Dibble RW, Chen JY, Sarathy SM |
696 - 710 |
Assessment of elliptic flame front propagation characteristics of iso-octane, gasoline, M85 and E85 in an optical engine Ihracska B, Korakianitis T, Ruiz P, Emberson DR, Crookes RJ, Diez A, Wen DS |
711 - 724 |
A coordinated investigation of the combustion chemistry of diisopropyl ketone, a prototype for biofuels produced by endophytic fungi Allen JW, Scheer AM, Gao CW, Merchant SS, Vasu SS, Welz O, Savee JD, Osborn DL, Lee C, Vranckx S, Wang ZD, Qi F, Fernandes RX, Green WH, Hadi MZ, Taatjes CA |
725 - 734 |
A shock tube and laser absorption study of ignition delay times and OH reaction rates of ketones: 2-Butanone and 3-buten-2-one Badra J, Elwardany AE, Khaled F, Vasu SS, Farooq A |
735 - 747 |
Experimental and kinetic study on ignition delay times of DME/H-2/O-2/Ar mixtures Pan L, Hu EJ, Zhang JX, Zhang ZH, Huang ZH |
748 - 765 |
Combustion chemistry and flame structure of furan,group biofuels using molecular-beam mass spectrometry and gas chromatography - Part I: Furan Liu D, Togbe C, Tran LS, Felsmann D, Osswald P, Nau P, Koppmann J, Lackner A, Glaude PA, Sirjean B, Fournet R, Battin-Leclerc F, Kohse-Hoinghaus K |
766 - 779 |
Combustion chemistry and flame structure of furan group biofuels using molecular-beam mass spectrometry and gas chromatography - Part II: 2-Methylfuran Tran LS, Togbe C, Liu D, Felsmann D, Osswald P, Glaude PA, Fournet R, Sirjean B, Battin-Leclerc F, Kohse-Hoinghaus K |
780 - 797 |
Combustion chemistry and flame structure of furan group biofuels using molecular-beam mass spectrometry and gas chromatography - Part III: 2,5-Dimethylfuran Togbe C, Tran LS, Liu D, Felsmann D, Osswald P, Glaude PA, Sirjean B, Fournet R, Battin-Leclerc F, Kohse-Hoinghaus K |
798 - 809 |
Chemical kinetic study of a novel lignocellulosic biofuel: Di-n-butyl ether oxidation in a laminar flow reactor and flames Cai LM, Sudholt A, Lee DJ, Egolfopoulos FN, Pitsch H, Westbrook CK, Sarathy SM |
810 - 817 |
Oxidation of small alkyl esters in flames Wang YL, Lee DJ, Westbrook CK, Egolfopoulos FN, Tsotsis TT |
818 - 825 |
Experimental and kinetic modeling study of trans-methyl-3-hexenoate oxidation in JSR and the role of C=C double bond Zhang KW, Togbe C, Dayma G, Dagaut P |
826 - 834 |
The combustion properties of 2,6,10-trimethyl dodecane and a chemical functional group analysis Won SH, Dooley S, Veloo PS, Wang HW, Oehlschlaeger MA, Dryer FL, Ju YG |
835 - 847 |
Experimental and detailed kinetic model for the oxidation of a Gas to Liquid (GtL) jet fuel Dagaut P, Karsenty F, Dayma G, Dievart P, Hadj-Ali K, Mze-Ahmed A, Braun-Unkhoff M, Herzler J, Kathrotia T, Kick T, Naumann C, Riedel U, Thomas L |
848 - 863 |
Experimental investigation and detailed modeling of soot aggregate formation and size distribution in laminar coflow diffusion flames of Jet A-1, a synthetic kerosene, and n-decane Saffaripour M, Veshkini A, Kholghy M, Thomson MJ |