Effect of selected organic and inorganic snow and cloud components on the photochemical generation of nitrite by nitrate irradiation. - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Chemosphere Année : 2007

Effect of selected organic and inorganic snow and cloud components on the photochemical generation of nitrite by nitrate irradiation.

Résumé

The effect of selected organic and inorganic compounds, present in snow and cloudwater was studied. Photolysis of solutions of nitrate to nitrite was carried out in the laboratory using a UVB light source. The photolysis and other reactions were then modelled. It is shown that formate, formaldehyde, methanesulphonate, and chloride to a lesser extent, can increase the initial formation rate of nitrite. The effect, particularly significant for formate and formaldehyde, is unlikely to be caused by scavenging of hydroxyl radicals. The experimental data obtained in this work suggest that possible causes are the reduction of nitrogen dioxide and nitrate by radical species formed on photooxidation of the organic compounds. Hydroxyl scavenging by organic and inorganic compounds would not affect the initial formation rate of nitrite, but would protect it from oxidation, therefore, increasing the concentration values reached at long irradiation times. The described processes can be relevant to cloudwater and the quasi-liquid layer on the surface of ice and snow, considering that in the polar regions irradiated snow layers are important sources of nitrous acid to the atmosphere. Formate and (at a lesser extent) formaldehyde are the compounds that play the major role in the described processes of nitrite/nitrous acid photoformation by initial rate enhancement and hydroxyl scavenging.
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Dates et versions

hal-00243986 , version 1 (07-02-2008)

Identifiants

  • HAL Id : hal-00243986 , version 1

Citer

C. Minero, V. Maurino, F. Bono, E. Pelizzetti, A. Marinoni, et al.. Effect of selected organic and inorganic snow and cloud components on the photochemical generation of nitrite by nitrate irradiation.. Chemosphere, 2007, 68 (11), pp.2111-2117. ⟨hal-00243986⟩
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