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Assessing the ammonium nitrate formation regime in the Paris megacity and its representation in the CHIMERE model

Item

Title (Dublin Core)

Assessing the ammonium nitrate formation regime in the Paris megacity and
its representation in the CHIMERE model

Description (Dublin Core)

Secondary inorganic compounds represent a major fraction of fine aerosol in the Paris megacity. The thermodynamics behind their formation is now relatively well constrained but, due to sparse direct measurements of their precursors (in particular NH<sub>3</sub> and HNO<sub>3</sub>), uncertainties remain on their concentrations and variability as well as the formation regime of ammonium nitrate (in terms of limited species among NH<sub>3</sub> and HNO<sub>3</sub>) in urban environments such as Paris. This study presents the first urban background measurements of both inorganic aerosol compounds and their gaseous precursors during several months within the city of Paris. Intense agriculture-related NH<sub>3</sub> episodes are observed in spring/summer while HNO<sub>3</sub> concentrations remain relatively low, even during summer, which leads to a NH<sub>3</sub>-rich regime in Paris. The local formation of ammonium nitrate within the city appears low, despite high NO<sub><i>x</i></sub> emissions. The data set also allows evaluating the CHIMERE chemistry-transport model (CTM). Interestingly, the rather good results obtained on ammonium nitrates hide significant errors on gaseous precursors (e.g., mean bias of −75 and +195 % for NH<sub>3</sub> and HNO<sub>3</sub>, respectively). This leads to a misrepresentation of the nitrate formation regime through a highly underestimated gas ratio metric (introduced by Ansari and Pandis, 1998) and a much higher sensitivity of nitrate concentrations to ammonia changes. Several uncertainty sources are investigated, pointing out the importance of better assessing both NH<sub>3</sub> agricultural emissions and OH concentrations in the future. These results remind us of the caution required when using of CTMs for emission scenario analysis, highlighting the importance of prior diagnostic and dynamic evaluations.

Creator (Dublin Core)

Petetin, Hervé
Sciare, Jean
Bressi, Michael
Gros, Valérie
Rosso, Amandine
Sanchez, Olivier
Sarda-Estève, Roland
Petit, Jean-Eudes
Beekmann, Matthias

Date (Dublin Core)

2018-09-09

Type (Dublin Core)

Text

Format (Dublin Core)

application/pdf

Identifier (Dublin Core)

10.5194/acp-16-10419-2016
https://acp.copernicus.org/articles/16/10419/2016/

Source (Dublin Core)

eISSN: 1680-7324

Language (Dublin Core)

eng
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