Physical and Chemical Mechanisms of Reactions that Proceed at Extremely High Rates in a Propagating Flame and the Detonation of Gas

The characteristic periods of the reactions in a propagating flame and the detonation of most gases are found to be less than 10 −4 and 10 −6 s, respectively. The extreme rates and accelerations of reactions responsible for such short times correspond to the law of the dependence of the rate of the...

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Veröffentlicht in:Russian Journal of Physical Chemistry A 2022-03, Vol.96 (3), p.527-534
Hauptverfasser: Azatyan, V. V., Prokopenko, V. M., Bolodyan, I. A., Gordienko, G. M., Kopylov, N. P., Kopylov, S. N.
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container_end_page 534
container_issue 3
container_start_page 527
container_title Russian Journal of Physical Chemistry A
container_volume 96
creator Azatyan, V. V.
Prokopenko, V. M.
Bolodyan, I. A.
Gordienko, G. M.
Kopylov, N. P.
Kopylov, S. N.
description The characteristic periods of the reactions in a propagating flame and the detonation of most gases are found to be less than 10 −4 and 10 −6 s, respectively. The extreme rates and accelerations of reactions responsible for such short times correspond to the law of the dependence of the rate of the combustion reaction on temperature, which is an exponent containing a Boltzmann factor in a positive power index. The kinetics of the processes is determined mainly by a sharp increase in the concentrations of free atoms and radicals as they approach those of the initial reagents. The conclusions of the theory agree with experimental results.
doi_str_mv 10.1134/S0036024422030062
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subjects Chemical Kinetics and Catalysis
Chemical reactions
Chemistry
Chemistry and Materials Science
Gas detonation
Physical Chemistry
Reagents
title Physical and Chemical Mechanisms of Reactions that Proceed at Extremely High Rates in a Propagating Flame and the Detonation of Gas
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