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The Gas-Phase Reaction between O3 and HO Radical: A Theoretical Study

โœ Scribed by Alex Mansergas; Josep M. Anglada


Publisher
John Wiley and Sons
Year
2007
Tongue
English
Weight
197 KB
Volume
8
Category
Article
ISSN
1439-4235

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โœฆ Synopsis


Abstract

We report a theoretical study on the reaction of ozone with hydroxyl radical, which is important in the chemistry of the atmosphere and in particular participates in stratospheric ozone destruction. The reaction is a complex process that involves, in the first stage, a preโ€reactive hydrogenโ€bonded complex (C1), which is formed previous to two transition states (TS1 and TS2) involving the addition of the hydroxyl radical to ozone, and leads to the formation of HO~4~ polyoxide radical before the release of the products HO~2~ and O~2~. The reaction is computed to be exothermic by 42.72 kcalโ€‰mol^โˆ’1^, which compares quite well with the experimental estimate, and the energy barriers of TS1 and TS2 with respect to C1 are computed to be 1.80 and 2.26 kcalโ€‰mol^โˆ’1^ at 0 K. A kinetic study based on the variational transition state theory (VTST) predicts a rate constant, at 298 K, of 7.37ร—10^โˆ’14^ cm^3^molecule^โˆ’1^s^โˆ’1^, compared to the experimentally recommended value of 7.25ร—10^โˆ’14^ cm^3^molecule^โˆ’1^s^โˆ’1^.


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