Nagy, J.; Portman, W. M.
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Explosibility of Coal Dust in an Atmosphere Containing a Low Percentage of Methane.
Bureau of Mines, Pittsburgh, PA
Report of Investigations 5815,
1961,
20 p.
DeJoannon, M.; Sabia, P.; Tregrossi, A.; Cavaliere, A.
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Dynamic Behavior of Methane Oxidation in Premixed Flow Reactor.
Istituto di Ricerche sulla Combustione, C.N.R., Naples, Italy; Università Federico II, Naples, Italy
Combustion Science and Technology,
Vol. 176,
No. 5/6,
769-783,
May/June 2004
Skjøth-Rasmussen, M. S.; Glarborg, P.; Ostberg, M.; Johannessen, J. T.; Livbjerg, H.; Jensen, A. D.; Christensen, T. S.
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Formation of Polycyclic Aromatic Hydrocarbons and Soot in fuel-Rich Oxidation of Methane in a Laminar Flow Reactor.
Technical University of Denmark, Building 229, DK-2800 Kgs., Lyngby, Denmark; Haldor Topsøe A/S, Nymøllevej 55, DK-2800 Kgs., Lyngby, Denmark
Combustion and Flame,
Vol. 136,
No. 1/2,
91-128,
January 2004
Wu, Y. P. G.; Lin, Y. F.
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Oxidation of Trichloroethene With Methane: Experiment and Kinetic Modeling.
National I-Lan University, Taiwan, Republic of China
Combustion and Flame,
Vol. 137,
No. 3,
376-402,
May 2004
Burke, R.
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Hazardous Materials Dangers in Confined Spaces.
Firehouse,
Vol. 29,
No. 5,
82,84-86,
May 2004
Muppala, S. P. R.; Aluri, N. K.; Dinkelacker, F.; Leipertz, A.
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Development of an Algebraic Reaction Rate Closure for the Numerical Calculation of Turbulent Premixed Methane, Ethylene, and Propane/Air flames for Pressures Up to 1.0 MPa.
Universität Erlangen-Nürnberg, Erlangen, Germany
Combustion and Flame,
Vol. 140,
No. 4,
257-266,
March 2005
Park, S. H.; Rogak, S. N.; Bushe, W. K.; Wen, J. Z.; Thomson, M. J.
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Aerosol Model to Predict Size and Structure of Soot Particles.
Gwangju Institute of Science and Technology, Korea; British Columbia Univ., Vancouver, Canada; Toronto Univ., Canada
Combustion Theory and Modelling,
Vol. 9,
No. 3,
499-513,
August 2005
Henshaw, P. F.; D'Andrea, T.; Mann, K. R. C.
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Premixed Ammonia-Methane-Air Combustion.
Windsor Univ., Ontario, Canada
Combustion Science and Technology,
Vol. 177,
No. 11,
2151-2170,
November 2005
Moore, J. D.; Risha, G. A.; Kuo, K. K.; D'Agostini, M. D.
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Effect of Reactant Initial Temperature on Methane/Oxygen Diffusion Flame Stability in a Furnace.
Pennsylvania State Univ., University Park; Air Products and Chemicals, Inc., Allentown. PA
Combustion Science and Technology,
Vol. 177,
No. 11,
2069-2089,
November 2005
Zsely, I. G.; Zador, J.; Turanyi, T.
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On the Similarity of the Sensitivity Functions of Methane Combustion Models.
Eötvös University (ELTE), Budapest, Hungary
Combustion Theory and Modelling,
Vol. 9,
No. 4,
721-738,
November 2005