The gas-phase reaction of ozone with eight alkenes including six I ,I-disubstituted alkenes has been investigated at ambient T (285-298 K) and p = 1 atrn. of air. The reaction rate constants are, in units of lo-" cm3 molecule-' s ~' . 9 50 5 1.23 for 3-methyl-I-butene. 13 I ? I 8 for 2-methyl-I-pent
Carbonyl products of the gas phase reaction of ozone with 1,1-disubstituted alkenes
โ Scribed by Eric Grosjean; Daniel Grosjean
- Publisher
- Springer Netherlands
- Year
- 1996
- Tongue
- English
- Weight
- 933 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0167-7764
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โฆ Synopsis
Carbonyl products have been identified and their formation yields measured in experiments involving the gas phase reaction of ozone with 1,1-disubstituted alkenes at ambient T and p = 1 atm. of air. Sufficient cyclohexane was added to scavenge the hydroxyl radical in order to minimize OH-alkene and OH-carbonyl reactions. Formation yields (carbonyl formed/ozone reacted) of primary carbonyls were close to the value of 1.0 that is consistent with the mechanism : 03 4-R~ R2C = CH2 --4 a(HCHO + RxR2COO) + (1 -a) (RI COR2 + H2COO) where formaldehyde and the ketone RI COR2 are the primary carbonyls and R1R2COO and H2COO are the corresponding biradicals. Measured values of c~ were 0.58-0.82 and indicate modest preferential formation of formaldehyde and the disubstituted biradical as compared to the ketone and the biradical H2COO. Carbonyls other than the primary carbonyls were identified. Their formation is discussed in terms of subsequent reactions of the disubstituted biradicals R1R2COO. Similarities and differences between disubstituted and monosubstituted biradicals are outlined.
๐ SIMILAR VOLUMES
The gas-phase reaction of ozone with C5 -Clo alkenes (eight 1-alkenes, four 1,l-disubstituted alkenes, and cyclohexene) has been investigated a t atmospheric pressure and ambient temperature (285-293 K). Cyclohexane was added to scavenge the hydroxyl radical, which forms as a product of the ozonealk
The rate law -d[O,]/dt = kl[A][OJ + k3[A][03]2/(k4 + kb[02]) has been found to obrain for the reaction of ozone with allene and with 1,2-butadiene. We now find that this rate law also applies to the reaction of ozone with ethylene and presumably with all lower alkenes. This generalizes the inhibiti
The reaction between ozone and thiophene was studied from 30 to 125ยฐC over a pressure range of 0.005-0.3 torr ozone and 0.1-1 torr thiophene. The most abundant product was 0 2 with smaller amounts of CO, and SOZ. The mass balance was 100% for oxygen and approached 100yo for sulfur a t the higher val