Flame structure and kinetic studies of carbon dioxide-diluted dimethyl ether flames at reduced and elevated pressures
暂无分享,去创建一个
C. Togbé | Y. Ju | D. Felsmann | Dong Liu | Xiaobo Shen | K. Kohse-Höinghaus | A. Lackner | Xueliang Yang | J. Santner | Julia Koppmann
[1] H. Curran,et al. A Hierarchical and Comparative Kinetic Modeling Study of C1 − C2 Hydrocarbon and Oxygenated Fuels , 2013 .
[2] R. Hanson,et al. Shock tube measurements of methane, ethylene and carbon monoxide time-histories in DME pyrolysis , 2013 .
[3] Gerard Wysocki,et al. Direct In Situ Quantification of HO2 from a Flow Reactor. , 2013, The journal of physical chemistry letters.
[4] Fabian Mauss,et al. Detailed mass spectrometric and modeling study of isomeric butene flames , 2013 .
[5] Liangjie Wei,et al. Experimental and numerical investigation on diluted DME flames: Thermal and chemical kinetic effects on laminar flame speeds , 2012 .
[6] R. Tranter,et al. High‐temperature dissociation of ethyl radicals and ethyl iodide , 2012 .
[7] M. P. Burke,et al. Comprehensive H2/O2 kinetic model for high‐pressure combustion , 2012 .
[8] C. Annesley,et al. Shock tube investigation of CH3 + CH3OCH3. , 2012, The journal of physical chemistry. A.
[9] J. Troe,et al. The dissociation/recombination reaction CH4 (+M) ⇔ CH3 + H (+M): a case study for unimolecular rate theory. , 2012, The Journal of chemical physics.
[10] Phillip R. Westmoreland,et al. Combustion chemistry and fuel-nitrogen conversion in a laminar premixed flame of morpholine as a model biofuel , 2011 .
[11] Chun-de Yao,et al. Measurements and modeling study of intermediates in ethanol and dimethy ether low-pressure premixed flames using synchrotron photoionization , 2011 .
[12] James A. Miller,et al. Theoretical unimolecular kinetics for CH4 + M ⇄ CH3 + H + M in eight baths, M = He, Ne, Ar, Kr, H2, N2, CO, and CH4. , 2011, The journal of physical chemistry. A.
[13] Joe V. Michael,et al. Roaming radicals in the thermal decomposition of dimethyl ether:Experiment and theory , 2011 .
[14] Jonathan Tennyson,et al. HITEMP, the high-temperature molecular spectroscopic database , 2010 .
[15] P. R. Westmoreland,et al. Biofuel combustion chemistry: from ethanol to biodiesel. , 2010, Angewandte Chemie.
[16] Marcos Chaos,et al. Negative pressure dependence of mass burning rates of H2/CO/O2/diluent flames at low flame temperatures , 2010 .
[17] L. Pillier,et al. Comparative study of the influence of CO2 and H2O on the chemical structure of lean and rich methane-air flames at atmospheric pressure , 2009 .
[18] R. Hanson,et al. High-temperature shock tube measurements of dimethyl ether decomposition and the reaction of dimethyl ether with OH. , 2009, The journal of physical chemistry. A.
[19] A. Jasper,et al. The dissociation of diacetyl: a shock tube and theoretical study. , 2009, The journal of physical chemistry. A.
[20] C. Goldsmith,et al. Decomposition and vibrational relaxation in CH3I and self-reaction of CH3 radicals. , 2009, The journal of physical chemistry. A.
[21] P. Oßwald,et al. Sampling Probe Influences on Temperature and Species Concentrations in Molecular Beam Mass Spectroscopic Investigations of Flat Premixed Low-pressure Flames , 2009 .
[22] M. P. Burke,et al. Effect of cylindrical confinement on the determination of laminar flame speeds using outwardly propagating flames , 2009 .
[23] Marcos Chaos,et al. Composition of reaction intermediates for stoichiometric and fuel-rich dimethyl ether flames: flame-sampling mass spectrometry and modeling studies. , 2009, Physical chemistry chemical physics : PCCP.
[24] Zuo-hua Huang,et al. Measurement of Laminar Burning Velocities of Dimethyl Ether−Air Premixed Mixtures with N2 and CO2 Dilution , 2009 .
[25] P. Dagaut,et al. Experimental and Detailed Kinetic Modeling of the Oxidation of Methane and Methane/Syngas Mixtures and Effect of Carbon Dioxide Addition , 2008 .
[26] Bin Yang,et al. Isomer-specific influences on the composition of reaction intermediates in dimethyl ether/propene and ethanol/propene flame. , 2008, The journal of physical chemistry. A.
[27] T. Lieuwen,et al. Laminar flame speeds of H2/CO mixtures : Effect of CO2 dilution, preheat temperature, and pressure , 2007 .
[28] W. Dahm,et al. A study of the effects of diluents on near-limit H2-air flames in microgravity at normal and reduced pressures , 2007 .
[29] Y. Ju,et al. STUDIES ON THE LIFTOFF PROPERTIES OF DIMETHYL ETHER JET DIFFUSION FLAMES , 2006 .
[30] P. Varghese,et al. Frequency-resolved absorption tomography with tunable diode lasers. , 2005, Applied optics.
[31] F. Dryer,et al. Measurements of dimethyl ether/air mixture burning velocities by using particle image velocimetry , 2004 .
[32] S. Keel,et al. Comparative study of flame structures and NOx emission characteristics in fuel injection recirculation and fuel gas recirculation combustion system , 2004 .
[33] H. Hippler,et al. The thermal unimolecular decomposition of HCO: effects of state specific rate constants on the thermal rate constant , 2004 .
[34] James A. Miller,et al. The H + C2H2(+M) ⇄ C2H3(+M) and H + C2H2(+M) ⇄ C2H5(+M) reactions: Electronic structure, variational transition-state theory, and solutions to a two-dimensional master equation , 2004 .
[35] Hongsheng Guo,et al. The chemical effect of CO2 replacement of N2 in air on the burning velocity of CH4 and H2 premixed flames , 2003 .
[36] C. Paillard,et al. Laminar flame velocity determination for H2–air–He–CO2 mixtures using the spherical bomb method , 2003 .
[37] J. Herbon,et al. Quantitative detection of HCO behind shock waves: The thermal decomposition of HCO , 2002 .
[38] Michael Frenklach,et al. Reaction mechanism of soot formation in flames , 2002 .
[39] J. Simmie,et al. Burning velocities of dimethyl ether and air , 2001 .
[40] Hongsheng Guo,et al. The chemical effects of carbon dioxide as an additive in an ethylene diffusion flame: implications for soot and NOx formation , 2001 .
[41] Timothy J. Wallington,et al. Experimental and Modeling Study of Premixed Atmospheric-Pressure Dimethyl Ether−Air Flames , 2000 .
[42] K. Maruta,et al. On the extinction limit and flammability limit of non-adiabatic stretched methane–air premixed flames , 1997, Journal of Fluid Mechanics.
[43] William J. Pitz,et al. A WIDE RANGE MODELING STUDY OF DIMETHYL ETHER OXIDATION , 1997 .
[44] Michael R. Belmont,et al. Combustion of methane and ethane with CO2 replacing N2 as a diluent. Modelling of combined effects of detailed chemical kinetics and thermal properties on the early stages of combustion , 1995 .
[45] C. Dasch,et al. One-dimensional tomography: a comparison of Abel, onion-peeling, and filtered backprojection methods. , 1992, Applied optics.
[46] Michael J. Pilling,et al. Study of the recombination reaction methyl + methyl .fwdarw. ethane. 1. Experiment , 1988 .
[47] A. Wagner,et al. The addition and dissociation reaction atomic hydrogen + carbon monoxide .dblharw. oxomethyl. 2. Experimental studies and comparison with theory , 1987 .
[48] P. Lynch,et al. Dissociation of dimethyl ether at high temperatures , 2013 .
[49] F. Dryer,et al. Measurements of H2O2 in low temperature dimethyl ether oxidation , 2013 .
[50] F. Dryer,et al. The effects of water dilution on hydrogen, syngas, and ethylene flames at elevated pressure , 2013 .
[51] P. Oßwald,et al. Combustion of butanol isomers – A detailed molecular beam mass spectrometry investigation of their flame chemistry , 2011 .
[52] Chunsheng Ji,et al. Propagation and extinction of premixed dimethyl-ether/air flames , 2009 .
[53] P. R. Westmoreland,et al. Species identification in a laminar premixed low-pressure flame of morpholine as a model substance for oxygenated nitrogen-containing fuels. , 2009 .
[54] Lawrence B. Harding,et al. Theoretical rate coefficients for the reaction of methyl radical with hydroperoxyl radical and for methylhydroperoxide decomposition , 2009 .
[55] P. Dagaut,et al. Oxidation of H2/CO2 mixtures and effect of hydrogen initial concentration on the combustion of CH4 and CH4/CO2 mixtures: Experiments and modeling , 2009 .
[56] P. Tiggelen,et al. Flame structure studies of rich ethylene-oxygen-argon mixtures doped with CO2, or with NH3, or with H2O , 2009 .
[57] Peter Glarborg,et al. Chemical Effects of a High CO2 Concentration in Oxy-Fuel Combustion of Methane , 2008 .
[58] F. Dryer,et al. Thermal decomposition reaction and a comprehensive kinetic model of dimethyl ether , 2008 .
[59] P. R. Westmoreland,et al. Photoionization mass spectrometry and modeling studies of the chemistry of fuel-rich dimethyl ether flames☆ , 2007 .
[60] F. Dryer,et al. High temperature ignition and combustion enhancement by dimethyl ether addition to methane–air mixtures☆ , 2007 .
[61] Y. Ju,et al. Studies of radiation absorption on flame speed and flammability limit of CO2 diluted methane flames at elevated pressures , 2007 .
[62] Y. Ju,et al. Extinction and flame bifurcations of stretched dimethyl ether premixed flames , 2005 .
[63] Stephen J. Klippenstein,et al. Dissociation, relaxation, and incubation in the high-temperature pyrolysis of ethane, and a successful RRKM modeling , 2005 .
[64] Ronald K. Hanson,et al. High-temperature ethane and propane decomposition , 2005 .
[65] Y. Ju,et al. Measurements of burning velocities of dimethyl ether and air premixed flames at elevated pressures , 2005 .
[66] A. Ravishankara,et al. Elementary reactions of formyl (HCO) radical studied by laser photolysis—transient absorption spectroscopy , 2005 .
[67] Frederick L. Dryer,et al. The reaction kinetics of dimethyl ether. I: High‐temperature pyrolysis and oxidation in flow reactors , 2000 .
[68] Frederick L. Dryer,et al. The reaction kinetics of dimethyl ether. II: Low‐temperature oxidation in flow reactors , 2000 .
[69] Robert J. Kee,et al. PREMIX :A F ORTRAN Program for Modeling Steady Laminar One-Dimensional Premixed Flames , 1998 .
[70] G. Adomeit,et al. Self-ignition of diesel-relevant hydrocarbon-air mixtures under engine conditions , 1996 .
[71] J. C. Boettner,et al. Chemical kinetic study of dimethylether oxidation in a jet stirred reactor from 1 to 10 ATM: Experiments and kinetic modeling , 1996 .
[72] C. Law,et al. The influence of carbon dioxide and oxygen as additives on soot formation in diffusion flames , 1991 .
[73] F. Egolfopoulos,et al. Experimental and numerical determination of laminar flame speeds of methane/(Ar, N2, CO2)-air mixtures as function of stoichiometry, pressure, and flame temperature , 1989 .