The flash photolysis resonance fluorescence technique was used to measure the rate constants of the reaction 0 + 0 2 + M -0 3 + M (M = N2,02. Ar, and He) as a function of temperature. The results for the rate constants are given by knf(218 The activation energies with N2,02, and Ar as third bodies
Reactions of atomic oxygen. Part 1 .?The rate of the reaction O + O2+ M?O3+ M (M = He, Ar and Kr)
β Scribed by Donovan, R. J.; Husain, D.; Kirsch, L. J.
- Book ID
- 121355458
- Publisher
- Royal Society of Chemistry
- Year
- 1970
- Weight
- 852 KB
- Volume
- 66
- Category
- Article
- ISSN
- 0014-7672
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π SIMILAR VOLUMES
Rate coefficients of the title reaction R 31 (SO 2 + O + M β SO 3 + M) and R 56 (SO 2 + HO 2 β SO 3 + OH), important in the conversion of S(IV) to S(VI), were obtained at T = 970-1150 K and Ο ave = 16.2 ΞΌmol cm -3 behind reflected shock waves by a perturbation method. Shockheated H 2 /O 2 /Ar mixtur
## Abstract The flash photolysis resonance fluorescence technique has been used to reinvestigate the kinetics of the oxygen atomβoxygen molecule combination reaction. Thirdβorder rate constants for O~2~, N~2~, and Ar as deactivant molecules were determined over the temperature range of 219β368 K. T
The gas-phase reaction of the NOa radical with NO, was investigated, using a flash photolysis-visible absorption technique, over the total pressure range 25-400 Torr of nitrogen or oxygen diluent a t 298 2 2 K. The absolute rate constants determined (in units of em3 molecule-' s-') a t 25, 100, and