Kinetics and mechanism of the reactions of CH3CO and CH3C(O)CH2 radicals with O2.: Low-pressure discharge flow experiments and quantum chemical computations

被引:26
|
作者
Kovacs, Gergely [1 ]
Zador, Judit [1 ]
Farkas, Edit [1 ]
Nadasdi, Rebeka [1 ]
Szilagyi, Istvan [1 ]
Dobe, Sandor [1 ]
Berces, Tibor [1 ]
Marta, Ferenc [1 ]
Lendvay, Gyoergy [1 ]
机构
[1] Hungarian Acad Sci, Chem Res Ctr, H-1025 Budapest, Hungary
关键词
D O I
10.1039/b706216h
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The reactions CH3CO + O-2 -> products (1), CH3CO + O-2 -> OH +other products (1b) and CH3C(O)CH2 + O-2 - products (2) have been studied in isothermal discharge flow reactors with laser induced fluorescence monitoring of OH and CH3C(O)CH2 radicals. The experiments have been performed at overall pressures between 1.33 and 10.91 mbar of helium and 298 +/-1 K reaction temperature. OH formation has been found to be the dominant reaction channel for CH3CO + O-2: the branching ratio, Gamma(1b) = k(1b)/k(1,) is close to unity at around I mbar, but decreases rapidly with increasing pressure. The rate constant of the overall reaction, k(2), has been found to be pressure dependent: the fall-off behaviour has been analysed in comparison with reported data. Electronic structure calculations have confirmed that at room temperature the reaction of CH3C(O)CH2 with O-2 is essentially a recombination- type process. At high temperatures, the further reactions of the acetonyl-peroxyl adduct may yield OH radicals, but the most probable channel seems to be the O-2-catalysed keto-enol transformation of acetonyl. Implications of the results for atmospheric modelling studies have been discussed.
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页码:4142 / 4154
页数:13
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