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Wamatz, C. Chevalier: Kinetic Modelling of the Oxidation of Large Aliphatic Hydrocarbons. 773. The Combustion Institute, Pittsburgh (1997). [28] G. Goyal, U. Maas, J. Wamatz: Simulation of the Transition from Deflagration to Detonation. SAE Transactions. Journal of Fuels and Lubricants 99, I (1990). [29] U. Maas, B. Raffel, J. Wamatz, J. Wolfrum: Ignition Processes and Minimum Ignition Energy in Hydrocarbon-Oxygen and Oxygen-Ozone Mixtures. 1869. The Combustion Institute, Pittsburgh (1987). [30] B.

Burning, water vapor and inert gases can induce radical reactions in the gas phase. The radicals, following various mechanisms, may react directly with the C- active surface or with surface adsorbed species. Collisions of the radicals with inert solid surfaces ("quenching of radicals") lead to their destruction. At very high combustion temperatures (above 1 800 K) the main reacting species at the porous carbon surface are COz, radicals (OH, 0) with minor contribution of oxygen and H20 [29, 36, 37].

New York (1988). [32] J. D. J. E. Coltrin: A Model of Hydrogen-Oxygen Combustion on FlatPlate Platinum Catalyst. Combust. Flame, 96, 393-406 (1994). N. Fritsch, 1. Butland: SIAM J Sci. Stat. , 5, 300 (1984). [34] R. Richtmyer, K. Morton, in:L. Bers, R. Courant, J. ). Interscience Tracts in Pure and Applied Mathematics No 4, 2 nd edition (1967). [35] J. Wamatz: Detailed Studies of Combustion Chemistry. Proc. Contractors Meeting on EC Combustion Research, p. 172, EC. Bruxelles (1988). [36] U. Maas, 1.

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