Mechanism of carboxylic acid photooxidation in atmospheric aqueous phase: formation, fate and reactivity - Archive ouverte HAL
Article Dans Une Revue Atmospheric environment Année : 2012

Mechanism of carboxylic acid photooxidation in atmospheric aqueous phase: formation, fate and reactivity

Résumé

In the first part of the work, we investigated the reactivity toward photogenerated hydroxyl radicals (OH) of seven monocarboxylic acids and six dicarboxylic acids found in natural cloud water. This leads to the proposition of a schematic degradation pathway linking glutaric acid (C5) to complete mineralization into CO2. We report a detailed mechanism on the succinic acid reactivity toward OH leading to the formation of malonic, glyoxylic and consequently oxalic acids and a comparison with reported pathways proposed by the CAPRAM (Chemical Aqueous Phase RAdical Mechanism) is discussed. We also investigated the photooxidation of formic acid under atmospherically relevant conditions leading to the possible formation of oxalic acid via radical mediated recombination. The second part focuses on the polychromatic irradiation (closed to solar irradiation) of a collected cloud aqueous phase showing that irradiation of cloud water leads to the formation of both formic and acetic acids. Carboxylic acid formation increases in the presence of photogenerated hydroxyl radicals from hydrogen peroxide, showing that photooxidation could play a key role in the formation of carboxylic acids under atmospherically relevant conditions.
Fichier non déposé

Dates et versions

hal-00694959 , version 1 (07-05-2012)

Identifiants

  • HAL Id : hal-00694959 , version 1

Citer

Tiffany Charbouillot, Sophie Gorini, Guillaume Voyard, Marius Parazols, Marcello Brigante, et al.. Mechanism of carboxylic acid photooxidation in atmospheric aqueous phase: formation, fate and reactivity. Atmospheric environment, 2012. ⟨hal-00694959⟩
264 Consultations
0 Téléchargements

Partager

More