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- W2131602339 abstract "Nitrogen oxides in the lower troposphere catalyze the photochemical production of ozone (O 3 ) pollution during the day but react to form nitric acid, oxidize hydrocarbons, and remove O 3 at night. A key nocturnal reaction is the heterogeneous hydrolysis of dinitrogen pentoxide, N 2 O 5 . We report aircraft measurements of NO 3 and N 2 O 5 , which show that the N 2 O 5 uptake coefficient, g(N 2 O 5 ), on aerosol particles is highly variable and depends strongly on aerosol composition, particularly sulfate content. The results have implications for the quantification of regional-scale O 3 production and suggest a stronger interaction between anthropogenic sulfur and nitrogen oxide emissions than previously recognized." @default.
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- W2131602339 date "2006-01-06" @default.
- W2131602339 modified "2023-10-14" @default.
- W2131602339 title "Variability in Nocturnal Nitrogen Oxide Processing and Its Role in Regional Air Quality" @default.
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- W2131602339 doi "https://doi.org/10.1126/science.1120120" @default.
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