Chlorine nitrate: Kinetics of formation by ClO+NO2+M and of reaction with OH
- 1 August 1977
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 67 (3) , 997-1003
- https://doi.org/10.1063/1.434927
Abstract
Kinetic studies by the discharge–flow technique are reported. For ClONO2 formation from T=250–365 K, ClO decays in excess NO2 are monitored by conversion of ClO to Cl followed by resonance fluorescence detection at 134.7 nm. For OH reaction over T=246–387 K, pseudo‐first‐order OH decays are observed directly by OH‐resonance fluorescence. The recombination reaction (1) is near its low pressure, third‐order limit with k 1= (0.83±0.12) ×10−31 cm6 s−1 at 300 K for M=He and (1.52±0.23) ×10−31 cm6 s−1 at 297 K for M=N2. The k 1,Hetemperature dependence corresponds to T −3.15. These results are in good agreement with those of other studies. A temperature‐ and pressure‐dependent, empirical rate constant expression for stratospheric modeling calculations is proposed. The rate constantk 2 for the OH reaction is found to be (1.19±0.10) ×10−12 exp[(−333 ±22)/T] cm3 s−1, i.e., (3.93±0.11) ×10−13 at 295 K. The results are compared with other measurements and their significance for stratospheric processes is discussed.Keywords
This publication has 10 references indexed in Scilit:
- Kinetics of the reactions of hydroxyl radicals with some halocarbons: CHFCl2, CHF2Cl, CH3CCl3, C2HCl3, and C2Cl4The Journal of Chemical Physics, 1977
- Kinetics of the reactions of ClO with O and with NOThe Journal of Chemical Physics, 1977
- A study of the chemical degradation of ClONO2in the stratosphereGeophysical Research Letters, 1977
- The rate constant for the reaction of O(3P) atoms with ClONO2Chemical Physics Letters, 1977
- Stratospheric formation and photolysis of chlorine nitrateThe Journal of Physical Chemistry, 1976
- Kinetics of the reaction Cl + O3 → ClO + O2Chemical Physics Letters, 1976
- Rate measurements of reactions of OH by resonance absorption. Part 5.—Rate constants for OH + NO2(+M)→ HNO3(+M) over a wide range of temperature and pressureJournal of the Chemical Society, Faraday Transactions 2: Molecular and Chemical Physics, 1976
- Chlorofluoromethanes in the environmentReviews of Geophysics, 1975
- Gas phase recombination of OH with NO and NO2The Journal of Chemical Physics, 1974
- Thermal Decomposition of N2O4 and NO2 by Shock WavesThe Journal of Chemical Physics, 1970