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    Merged SAGE II, Ozone_cci and OMPS ozone profile dataset and evaluation of ozone trends in the stratosphere

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    Authors
    Sofieva, V.F.
    Kyrölä, E.
    Laine, M.
    Tamminen, J.
    Degenstein, D.
    Bourassa, A.
    Roth, C.
    Zawada, D.
    Weber, M.
    Rozanov, A.
    Rahpoe, N.
    Stiller, G.
    Laeng, A.
    von Clarmann, T.
    Walker, K.A.
    Sheese, P.
    Hubert, D.
    Van Roozendael, M.
    Zehner, C.
    Damadeo, R.
    Zawodny, J.
    Kramarova, N.
    Bhartia, P.K.
    Show allShow less
    Discipline
    Earth and related Environmental sciences
    Subject
    atmospheric chemistry
    climate change
    cooling
    data set
    halogen
    ozone
    stratosphere
    trend analysis
    Audience
    Scientific
    Date
    2017
    Metadata
    Show full item record
    Description
    In this paper, we present a merged dataset of ozone profiles from several satellite instruments: SAGE II on ERBS, GOMOS, SCIAMACHY and MIPAS on Envisat, OSIRIS on Odin, ACE-FTS on SCISAT, and OMPS on Suomi-NPP. The merged dataset is created in the framework of the European Space Agency Climate Change Initiative (Ozone-cci) with the aim of analyzing stratospheric ozone trends. For the merged dataset, we used the latest versions of the original ozone datasets. The datasets from the individual instruments have been extensively validated and intercompared; only those datasets which are in good agreement, and do not exhibit significant drifts with respect to collocated ground-based observations and with respect to each other, are used for merging. The long-Term SAGE-CCI-OMPS dataset is created by computation and merging of deseasonalized anomalies from individual instruments.

    The merged SAGE-CCI-OMPS dataset consists of deseasonalized anomalies of ozone in 10° latitude bands from 90°ĝ€S to 90°ĝ€N and from 10 to 50ĝ€km in steps of 1ĝ€km covering the period from October 1984 to July 2016. This newly created dataset is used for evaluating ozone trends in the stratosphere through multiple linear regression. Negative ozone trends in the upper stratosphere are observed before 1997 and positive trends are found after 1997. The upper stratospheric trends are statistically significant at midlatitudes and indicate ozone recovery, as expected from the decrease of stratospheric halogens that started in the middle of the 1990s and stratospheric cooling. © Author(s) 2017.
    Citation
    Sofieva, V.F.; Kyrölä, E.; Laine, M.; Tamminen, J.; Degenstein, D.; Bourassa, A.; Roth, C.; Zawada, D.; Weber, M.; Rozanov, A.; Rahpoe, N.; Stiller, G.; Laeng, A.; von Clarmann, T.; Walker, K.A.; Sheese, P.; Hubert, D.; Van Roozendael, M.; Zehner, C.; Damadeo, R.; Zawodny, J.; Kramarova, N.; Bhartia, P.K. (2017). Merged SAGE II, Ozone_cci and OMPS ozone profile dataset and evaluation of ozone trends in the stratosphere. , Atmospheric Chemistry and Physics, Vol. 17, Issue 20, 12533-12552, DOI: 10.5194/acp-17-12533-2017.
    Identifiers
    uri: https://orfeo.belnet.be/handle/internal/6324
    doi: http://dx.doi.org/10.5194/acp-17-12533-2017
    scopus: 2-s2.0-85029291829
    Type
    Article
    Peer-Review
    Yes
    Language
    eng
    Links
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