Global tropospheric ozone variations from 2003 to 2011 as seen by SCIAMACHY
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Published:2016-01-19
Issue:2
Volume:16
Page:417-436
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Ebojie F., Burrows J. P.ORCID, Gebhardt C.ORCID, Ladstätter-Weißenmayer A., von Savigny C., Rozanov A.ORCID, Weber M.ORCID, Bovensmann H.ORCID
Abstract
Abstract. An analysis of the tropospheric ozone (O3) columns (TOCs) derived from SCIAMACHY limb-nadir-matching (LNM) observations during the period 2003–2011, focusing on global variations in TOC, is described. The changes are derived using a multivariate linear regression model. TOC shows changes of −0.2 ± 0.4, 0.3 ± 0.4, 0.1 ± 0.5 and 0.1 ± 0.2 % yr−1, which are not statistically significant at the 2σ level in the latitude bands 30–50° N, 20° S–0, 0–20° N and 50–30° S, respectively. Tropospheric O3 shows statistically significant increases over some regions of South Asia (1–3 % yr−1), the South American continent (up to 2 % yr−1), Alaska (up to 2 % yr−1) and around Congo in Africa (up to 2 % yr−1). Significant increase in TOC is determined off the continents including Australia (up to 2 % yr−1), Eurasia (1–3 % yr−1) and South America (up to 3 % yr−1). Significant decrease in TOC (up to −3 % yr−1) is observed over some regions of the continents of North America, Europe and South America. Over the oceanic regions including the Pacific, North Atlantic and Indian oceans, significant decreases in TOC (−1 to −3 % yr−1) were observed. In addition, the response of the El Niño–Southern Oscillation (ENSO) and quasi-biennial oscillation (QBO) to changes in TOC for the period 2003–2011 was investigated. The result shows extensive regions, mostly in the tropics and Northern Hemisphere extratropics, of significant ENSO responses to changes in TOC and a significant QBO response to TOC changes over some regions.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference146 articles.
1. Appenzeller, C., Holton, J. R., and Rosenlof, K. H.: Seasonal
variation of mass transport across the tropopause, J. Geophys. Res., 101,
15071–15078,
https://doi.org/10.1029/96JD00821, 1996. 2. Baldwin, M. P., Gray, L. J., Dunkerton, T. J., Hamilton, K.,
Haynes, P. H., Randel, W. J., Holton, J. R., Alexander, M. J.,
Hirota, I., Horinouchi, T., Jones, D. B. A., Kinnersley, J. S.,
Marquardt, C., Sato, K., and Takahashi, M.: The quasi-biennial
oscillation, Rev. Geophys., 39, 179–230,
https://doi.org/10.1029/1999RG000073,
2001. 3. Beig, G. and Singh, V.: Trends in tropical tropospheric column ozone from
satellite data and MOZART model, Geophys. Res. Lett., 34, L17801,
https://doi.org/10.1029/2007GL030460, 2007. 4. Bell, C. J., Gray, L. J., Charlton-Perez, A. J., Joshi, M. M. and
Scaife, A. A.: Stratospheric communication of El Niño teleconnections
to European winter, J. Climate, 22, 4083–4096,
https://doi.org/10.1175/2009JCLI2717.1,
2009. 5. Bjerknes, J.: A possible response of the atmospheric hadley circulation to equatorial anomalies of ocean temperature, Tellus, 18, 820–829, 1966.
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