
International Journal of Chemical Kinetics p. 1179 - 1196 (1995)
Update date:2022-08-28
Topics:
Davidson, D. F.
Rosa, M. D. Di
Chang, E. J.
Hanson, R. K.
Bowman, C. T.
The methyl-methyl reaction was studied in a shock tube using uv narrowline laser absorption to measure time-varying concentration profiles of CH3.Methyl radicals were rapidly formed initially by pyrolysis of various precursors, azomethane, ethane, or methyl iodide, dilute in argon.The contributions of the various product channels, C2H6, C2H5 + H, C2H4 + H2, and CH2 + CH4, were examined by varying reactant mixtures and temperature.The measured rate coefficients for recombination to C2H6 between 1200 and 1800 K are accurately fit using the unimolecular rate coefficients reported by Wagner and Wardlaw (1988).The rate coefficient for the C2H5 + H channel was found to be 2.4 (+/- 0.5) x 1013 exp(-6480/T) a contribution by the C2H4 + H2 channel was found in ethane/methane/argon mixtures, although methyl profiles the these mixtures should be particularly sensitive to this channel.An upper limit of approximately 1011 a rate coefficient of 1.3 (+/- 0.3) x 1014
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