EXC3ITE

EXploring Chemistry, Composition and Circulation in the stratosphere with Innovative TEchnologies

CoordinatorUniversity of East Anglia ; Forschungszentrum Jülich
Grant period2016-04-01 - 2022-03-31
Funding bodyEuropean Union
Call numberERC-2015-STG
Grant number678904
IdentifierG:(EU-Grant)678904

Note: It is ozone that primarily heats and therefore creates the stratosphere. Human emissions of ozone-depleting substances (ODSs) have however led to dramatic stratospheric ozone losses for decades. This global problem is ongoing and of renewed concern due to recent unexpected changes. It is also likely affecting the nature of the stratosphere itself, with implications for global health and economy. In addition, emissions of greenhouse gases have been proposed to lead to a long-term acceleration of the stratospheric overturning circulation. In summary, significant stratospheric changes are to be expected from both, ozone losses and global warming. Indications for such changes have been reported, but there are substantial uncertainties and limitations connected with these studies. In addition, current technologies to explore stratospheric composition and chemistry are very expensive and often offer only infrequent data. There is clearly a need for new and improved tools to correctly detect and quantify changes from observations. This project will open 3 novel avenues to explore stratospheric chemistry, composition and circulation: 1) A newly developed low-cost technology to retrieve and analyse air from the stratosphere. This will be a new way to derive budgets of all important and newly emerging ODSs directly in the stratosphere; while at the same time providing observations of many strong greenhouse gases. 2) I have found new evidence for substantial past changes in stratospheric chemistry and circulation. An unprecedented investigation of stratospheric air archives spanning 40 years and >50 trace gases will allow new insights into these changes 3) New diagnosis tools and a detailed comparison with state-of-the-art models will identify the implications for future climate. The EXC3ITE project will result in a breakthrough in the understanding of stratospheric changes which are of high importance for society through their impact on climate prediction and ozone recovery.
     

Recent Publications

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Evaluation of vertical transport in ERA5 and ERA-Interim reanalysis using high-altitude aircraft measurements in the Asian summer monsoon 2017
Atmospheric chemistry and physics 24(1), 317 - 343 () [10.5194/acp-24-317-2024] OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Aircraft‐based observations of ozone‐depleting substances in the upper troposphere and lower stratosphere in and above the Asian summer monsoon\
Journal of geophysical research / D 126(1), e2020JD033137 () [10.1029/2020JD033137] OpenAccess  Download fulltext Files  Download fulltextFulltext by OpenAccess repository BibTeX | EndNote: XML, Text | RIS

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Stratospheric carbon isotope fractionation and tropospheric histories of CFC-11, CFC-12 and CFC-113 isotopologues
Atmospheric chemistry and physics / Discussions 2020, 843 () [https://doi.org/10.5194/acp-2020-843] OpenAccess  Download fulltext Files  Download fulltextFulltext by OpenAccess repository BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Datensatz erzeugt am 2016-02-12, letzte Änderung am 2023-02-07



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