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Wamatz, C. Chevalier: Kinetic Modelling of the Oxidation of Large Aliphatic Hydrocarbons. 773. The Combustion Institute, Pittsburgh (1997).  G. Goyal, U. Maas, J. Wamatz: Simulation of the Transition from Deflagration to Detonation. SAE Transactions. Journal of Fuels and Lubricants 99, I (1990).  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).  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).  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).  R. Richtmyer, K. Morton, in:L. Bers, R. Courant, J. ). Interscience Tracts in Pure and Applied Mathematics No 4, 2 nd edition (1967).  J. Wamatz: Detailed Studies of Combustion Chemistry. Proc. Contractors Meeting on EC Combustion Research, p. 172, EC. Bruxelles (1988).  U. Maas, 1.