Celnik, M. S.; Sander, M.; Raj, A.; West, R. H.; Kraft, M.
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Modeling Soot Formation in a Premixed Flame Using an Aromatic-Site Soot Model and an Improved Oxidation Rate.
Cambridge Univ., England
Volume 32; Part 1,
Combustion Institute, Symposium (International) on Combustion, 32nd. Proceedings. Volume 32. Part 1. August 3-8, 2008,
Combustion Institute, Pittsburgh, PA,
Montreal, Canada,
Dagaut, P.; Sick, V., Editors,
639-646 p.,
2009
d'Anna, A.; Kent, J. H.
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Modeling of Particulate Carbon and Species Formation in Coflowing Diffusion Flames of Ethylene.
Università di Napoli "Federico II," Napoli, Italy; Sydney Univ., Australia
Combustion and Flame,
Vol. 144,
No. 1/2,
249-260,
January 2006
Sivaramakrishnan, R.; Tranter, R. S.; Brezinsky, K.
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High Pressure Model for the Oxidation of Toluene.
Illinois Univ., Chicago
Combustion Institute, Symposium (International) on Combustion, 30th. Proceedings. Volume 30. Part 1. July 25-30, 2004,
Combustion Institute, Pittsburgh, PA,
Chicago, IL,
Chen, J. H.; Colket, M. D.; Barlow, R. S.; Yetter, R. A., Editors,
1165-1173 p.,
2005
Gail, S.; Dagaut, P.
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Oxidation of m-Xylene in a JSR: Experimental Study and Detailed Chemical Kinetic Modeling.
CNRS, Laboratoire de Combustion et Systèmes Réactifs Orléans cedex 2, France
Combustion Science and Technology,
Vol. 179,
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813-844,
May 2007
D'Anna, A.; Kent, J. H.
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Model of Particulate and Species Formation Applied to Laminar, Nonpremixed Flames for Three Aliphatic-Hydrocarbon Fuels.
Università "Federico II," Naples, Italy
Combustion and Flame,
Vol. 152,
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573-587,
March 2008
Danna, A.; Dalessio, A.; Kent, J.
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Reaction Path Analysis of the Formation of Aromatics and Soot in a Coflowing Laminar Diffusion Flame of Ethylene.
Universita di Napoli Federico II, Naples, Italy; University of Sydney, New South Wales, Australia
Combustion Science and Technology,
Vol. 174,
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279-294,
November/December 2002
Mediterranean Combustion Sympsoium, 2nd. (MCS-02). Proceedings. Organized by Cairo University, Cosponsored by the Combustion Institute and the International Centre for Heat and Mass Transfer and Partially supported by the International Centre for Theoretical Physics. January 6-11, 2002,
Sharm El-Sheikh, Egypt,
2002
McEnally, C. S.; Pfefferle, L. D.
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Fuel Decomposition and Hydrocarbon Growth Processes for Oxygenated Hydrocarbons: Butyl Alcohols.
Yale Univ., New Haven, CT
Combustion Institute, Symposium (International) on Combustion, 30th. Proceedings. Volume 30. Part 1. July 25-30, 2004,
Combustion Institute, Pittsburgh, PA,
Chicago, IL,
Chen, J. H.; Colket, M. D.; Barlow, R. S.; Yetter, R. A., Editors,
1363-1370 p.,
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Sivaramakrishnan, R.; Brezinsky, K.; Vasudevan, H.; Tranter, R. S.
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Shock-Tube Study of the High-Pressure Thermal Decomposition of Benzene.
Illinois Univ., Chicago; Argonne National Laboratory, Argonne, IL
Combustion Science and Technology,
Vol. 178,
No. 1-3,
285-305,
January/March 2006
Blanquart, G.; Pepiot-Desjardins, P.; Pitsch, H.
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Chemical Mechanism for High Temperature Combustion of Engine Relevant Fuels With Emphasis on Soot Precursors.
Stanford University, Stanford, CA
Combustion and Flame,
Vol. 156,
No. 3,
588-607,
March 2009
Sivaramakrishnan, R.; Tranter, R. S.; Brezinsky, K.
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High-Pressure, High-Temperature Oxidation of Toluene.
Illinois Univ., Chicago
Combustion and Flame,
Vol. 139,
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340-350,
December 2004