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  Insights Into NOxand HONO Chemistry in the Tropical Marine Boundary Layer at Cape Verde During the MarParCloud Campaign

Jiang, Y., Hoffmann, E. H., Tilgner, A., Aiyuk, M. B. E., Andersen, S. T., Wen, L., van Pinxteren, M., Shen, H., Xue, L., Wang, W., & Herrmann, H. (2023). Insights Into NOxand HONO Chemistry in the Tropical Marine Boundary Layer at Cape Verde During the MarParCloud Campaign. Journal of Geophysical Research: Atmospheres, 128(16):. doi:10.1029/2023JD038865.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-000D-D3C3-8 版のパーマリンク: https://hdl.handle.net/21.11116/0000-000D-D3C4-7
資料種別: 学術論文

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 作成者:
Jiang, Ying1, 著者
Hoffmann, Erik H.1, 著者
Tilgner, Andreas1, 著者
Aiyuk, Marvel B. E.1, 著者
Andersen, Simone T.2, 著者           
Wen, Liang1, 著者
van Pinxteren, Manuela1, 著者
Shen, Hengqing1, 著者
Xue, Likun1, 著者
Wang, Wenxing1, 著者
Herrmann, Hartmut1, 著者
所属:
1external, ou_persistent22              
2Atmospheric Chemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826285              

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 要旨: Chemical processing of reactive nitrogen species, especially of NOx (= NO + NO2) and nitrous acid (HONO), determines the photochemical ozone production and oxidation capacity in the troposphere. However, sources of HONO and NOx in the remote marine atmosphere are still poorly understood. In this work, the multiphase chemistry mechanism CAPRAM in the model framework SPACCIM was used to study HONO formation at Cape Verde (CVAO) in October 2017, adopted with the input of current parameterizations for various HONO sources. Three simulations were performed that adequately reproduced ambient HONO levels and its diurnal pattern. The model performance for NOx and O3 improves significantly when considering dust-surface-photocatalytic conversions of reactive nitrogen compounds with high correlation coefficients up to 0.93, 0.56, and 0.89 for NO, NO2, and O3, respectively. Photocatalytic conversion of the adsorbed HNO3 on dust is modeled to be the predominant contributor for daytime HONO at CVAO, that is, accounting for about 62% of the chemical formation rate at noontime. In contrast, the ocean-surface-mediated conversion of NO2 to HONO and other discussed pathways are less important. The average OH levels at midday (9:00–16:00) modeled for cluster trajectory 1, 2, and 3 are 5.2, 5.1, and 5.2 × 106 molecules cm−3, respectively. Main OH formation is driven by O3 photolysis with a contribution of 74.6% to the total source rate, while HONO photolysis is negligible (∼1.8%). In summary, this study highlights the key role of dust aerosols for HONO formation and NOx cycling at CVAO and possibly in other dust-affected regions, urgently calling for further investigations using field and model studies.

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言語: eng - English
 日付: 2023-08-17
 出版の状態: オンラインで出版済み
 ページ: -
 出版情報: -
 目次: -
 査読: -
 識別子(DOI, ISBNなど): ISI: 001054796600001
DOI: 10.1029/2023JD038865
 学位: -

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出版物 1

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出版物名: Journal of Geophysical Research: Atmospheres
  その他 : JGR-D
  省略形 : J. Geophys. Res. - D
種別: 学術雑誌
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出版社, 出版地: Washington, D.C. : American Geophysical Union
ページ: 19 巻号: 128 (16) 通巻号: e2023JD038865 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): ISSN: 0148-0227
CoNE: https://pure.mpg.de/cone/journals/resource/991042728714264_1