## Abstract Measurements of the rate coefficient of the reaction (O^3^__P__) + NO~2~ → O~2~ + NO have been made at 296°K and 240°K, using the technique of NO~2~\* chemiluminescent decay. Values of 9.3 × 10^−12^ cm^3^ molec^−1^ sec^−1^ at 296°K and 10.5 × 10^−12^ cm^3^ molec^−1^ sec^−1^ at 240°K wer
Laboratory investigation of the reaction NO + + O 3 → NO 2+ + O 2
✍ Scribed by Fehsenfeld, F. C.; Ferguson, E. E.; Howard, C. J.
- Book ID
- 119711132
- Publisher
- American Geophysical Union
- Year
- 1973
- Tongue
- English
- Weight
- 173 KB
- Volume
- 78
- Category
- Article
- ISSN
- 0148-0227
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📜 SIMILAR VOLUMES
The purpose of this communication is to report the discovery of a new rapid homogeneous gas-phase reaction. This new reaction is the NH3-NO-02 reaction. There is, of course, nothing new about the reaction of NH3 and NO, the reaction of NH3 and 02, or the reaction of NO and 0 2 . The kinetics of thes
Ihe reactions of CC1302 with NO and NO2 have been studied by steady-state photolqsis of Clz-HCCl,-Oz-&-NO --NOz mixtures at =I atm: CCl30, + NO -Ccl,0 + NO, (3), CCt,O, + NO2 (t hl) \* CCl,02NOt (+ hi) (4. A); k&k3 = 0.68, independent of temperature-The thermal decomposition of CC1302N02 via the bac