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Atmospheric Measurement Techniques An interactive open-access journal of the European Geosciences Union

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Atmos. Meas. Tech., 10, 1281-1298, 2017
https://doi.org/10.5194/amt-10-1281-2017
© Author(s) 2017. This work is distributed under
the Creative Commons Attribution 3.0 License.
Research article
03 Apr 2017
Potential of multispectral synergism for observing ozone pollution by combining IASI-NG and UVNS measurements from the EPS-SG satellite
Lorenzo Costantino et al.
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Interactive discussionStatus: closed
AC: Author comment | RC: Referee comment | SC: Short comment | EC: Editor comment
Printer-friendly Version - Printer-friendly version      Supplement - Supplement
 
RC1: 'Referee Comment', Anonymous Referee #1, 20 Jan 2017 Printer-friendly Version Supplement 
AC1: 'response to referee1 and referee2', Lorenzo Costantino, 24 Feb 2017 Printer-friendly Version Supplement 
 
RC2: 'Review of "Synergistic IASI-NG+UVNS retrievals for improving LMT ozone" by Costantino et al.', Anonymous Referee #2, 24 Jan 2017 Printer-friendly Version 
AC2: 'response to referee1 and referee2', Lorenzo Costantino, 24 Feb 2017 Printer-friendly Version Supplement 
Peer review completion
AR: Author's response | RR: Referee report | ED: Editor decision
AR by Anna Mirena Feist-Polner on behalf of the Authors (01 Mar 2017)  Author's response
ED: Publish subject to technical corrections (01 Mar 2017) by Helen Worden  
AR by Lorenzo Costantino on behalf of the Authors (03 Mar 2017)  Author's response  Manuscript
CC BY 4.0
Publications Copernicus
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Short summary
Using current space-borne measurements from one spectral domain (TIR or UV), only ozone down to 3–4 km altitude may be observed with adequate vertical sensitivity. Here, we evaluate the potential of a new multispectral retrieval method that combines the information from TIR and UV measurements provided by the new-generation sensors IASI-NG and UVNS. Both are on board the upcoming EPS-SG satellite. This new IASI-NG+UVNS retrieval approach allows observations of ozone layers down to 2 km a.s.l.
Using current space-borne measurements from one spectral domain (TIR or UV), only ozone down to...
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