Rcccivcd 30 Apnl 1982 SO:, photodissociation at 193 nm (AIF cxclmer lmr) ha been used to create SO radicals; the chcmdumincsccncc from the SO + 03 reaction has been used to follow the SO ndical decay. Rate coefticicnls at 298 K of (1 07 t 0.16) x 10-r6, (1 06 f 0 16) x 10-r3, and (1 48 k 0 20) x IO-
Rate data for O + OCS → SO + CO and SO + O3 → SO2 + O2 by a new time-resolved technique
✍ Scribed by John S. Robertshaw; Ian W. M. Smith
- Publisher
- John Wiley and Sons
- Year
- 1980
- Tongue
- English
- Weight
- 457 KB
- Volume
- 12
- Category
- Article
- ISSN
- 0538-8066
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Pulsed laser photolysis of O~3~ in a large excess of N~2~ has been used to generate O(^3^P) atoms in the presence of OCS. By observing chemiluminescence from the small fraction of electronically excited SO~2~ formed in the reaction of SO with O~3~, rate constants of (1.7 ± 0.2) × 10^−14^ and (8.7 ± 1.6) × 10^−14^ cm^3^/molecule sec have been determined at 296 ± 4 K for the reactions
equation image
and
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In addition, it has been shown that any reaction between SO and OCS has a rate constant 10^−14^ cm^3^/molecule sec.
📜 SIMILAR VOLUMES
The reacttonsof CH30z nitIt SO2 and NO haw been studied bv steady state photo&s of azomethane in the presence of Ot-SOz-SO mixtures at 196 M and I ;Ltm total pressure. Thr quantum yield of NO otidntion by CHxO= m.dicxG is increased substanthlIy when SO? is added ro the system indicating an SOa induc
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