ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight

The photolysis rate constant of dichlorine peroxide (ClOOCl, ClO dimer) J(ClOOCl) is a critical parameter in catalytic cycles destroying ozone (O-3) in the polar stratosphere. In the atmospherically relevant wavelength region (lambda > 310 nm), significant discrepancies between laboratory measure...

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Published in:Atmospheric Chemistry and Physics
Main Authors: Suminska-Ebersoldt, O., Lehmann, R., Volk, C. M., Borrmann, S., Rex, M., Stroh, F., von Hobe, M., Wegner, T., Grooß, J.-U., Hösen, E., Weigel, R., Frey, W., Griessbach, S., Mitev, V., Emde, C.
Format: Article in Journal/Newspaper
Language:English
Published: EGU 2012
Subjects:
Online Access:https://juser.fz-juelich.de/record/18761
https://juser.fz-juelich.de/search?p=id:%22PreJuSER-18761%22
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author Suminska-Ebersoldt, O.
Lehmann, R.
Volk, C. M.
Borrmann, S.
Rex, M.
Stroh, F.
von Hobe, M.
Wegner, T.
Grooß, J.-U.
Hösen, E.
Weigel, R.
Frey, W.
Griessbach, S.
Mitev, V.
Emde, C.
author_facet Suminska-Ebersoldt, O.
Lehmann, R.
Volk, C. M.
Borrmann, S.
Rex, M.
Stroh, F.
von Hobe, M.
Wegner, T.
Grooß, J.-U.
Hösen, E.
Weigel, R.
Frey, W.
Griessbach, S.
Mitev, V.
Emde, C.
author_sort Suminska-Ebersoldt, O.
collection Forschungszentrum Jülich: JuSER (Juelich Shared Electronic Resources)
container_issue 3
container_start_page 1353
container_title Atmospheric Chemistry and Physics
container_volume 12
description The photolysis rate constant of dichlorine peroxide (ClOOCl, ClO dimer) J(ClOOCl) is a critical parameter in catalytic cycles destroying ozone (O-3) in the polar stratosphere. In the atmospherically relevant wavelength region (lambda > 310 nm), significant discrepancies between laboratory measurements of ClOOCl absorption cross sections and spectra cause a large uncertainty in J(ClOOCl). Previous investigations of the consistency of published JClOOCl with atmospheric observations of chlorine monoxide (ClO) and ClOOCl have focused on the photochemical equilibrium between ClOOCl formation and photolysis, and thus could only constrain the ratio of J(ClOOCl) over the ClOOCl formation rate constant k(rec). Here, we constrain the atmospherically effective J(ClOOCl) independent of k(rec), using ClO measured in the same air masses before and directly after sunrise during an aircraft flight that was part of the RECONCILE field campaign in the winter 2010 from Kiruna, Sweden. Over sunrise, when the ClO/ClOOCl system comes out of thermal equilibrium and the influence of the ClO recombination reaction is negligible, the increase in ClO concentrations is significantly faster than expected from J(ClOOCl) based on the absorption spectrum proposed by Pope et al. (2007), but does not warrant cross sections larger than recently published values by Papanastasiou et al. (2009). In particular, the existence of a significant ClOOCl absorption band longwards of 420 nm is not supported by our observations. The observed night-time ClO would not be consistent with a ClO/ClOOCl thermal equilibrium constant significantly higher than the one proposed by Plenge et al. (2005).
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op_doi https://doi.org/10.5194/acp-12-1353-2012
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https://juser.fz-juelich.de/record/18761
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op_source Atmospheric chemistry and physics 12, 1353 - 1365 (2012). doi:10.5194/acp-12-1353-2012
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spelling ftfzjuelichnvdb:oai:juser.fz-juelich.de:18761 2025-01-16T22:54:49+00:00 ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight Suminska-Ebersoldt, O. Lehmann, R. Volk, C. M. Borrmann, S. Rex, M. Stroh, F. von Hobe, M. Wegner, T. Grooß, J.-U. Hösen, E. Weigel, R. Frey, W. Griessbach, S. Mitev, V. Emde, C. DE 2012 https://juser.fz-juelich.de/record/18761 https://juser.fz-juelich.de/search?p=id:%22PreJuSER-18761%22 eng eng EGU info:eu-repo/semantics/altIdentifier/hdl/2128/7372 info:eu-repo/semantics/altIdentifier/wos/WOS:000300656500009 info:eu-repo/semantics/altIdentifier/issn/1680-7316 info:eu-repo/semantics/altIdentifier/doi/10.5194/acp-12-1353-2012 info:eu-repo/grantAgreement/EC//226365 https://juser.fz-juelich.de/record/18761 https://juser.fz-juelich.de/search?p=id:%22PreJuSER-18761%22 info:eu-repo/semantics/openAccess Atmospheric chemistry and physics 12, 1353 - 1365 (2012). doi:10.5194/acp-12-1353-2012 info:eu-repo/classification/ddc/550 J info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2012 ftfzjuelichnvdb https://doi.org/10.5194/acp-12-1353-2012 2024-08-05T23:55:47Z The photolysis rate constant of dichlorine peroxide (ClOOCl, ClO dimer) J(ClOOCl) is a critical parameter in catalytic cycles destroying ozone (O-3) in the polar stratosphere. In the atmospherically relevant wavelength region (lambda > 310 nm), significant discrepancies between laboratory measurements of ClOOCl absorption cross sections and spectra cause a large uncertainty in J(ClOOCl). Previous investigations of the consistency of published JClOOCl with atmospheric observations of chlorine monoxide (ClO) and ClOOCl have focused on the photochemical equilibrium between ClOOCl formation and photolysis, and thus could only constrain the ratio of J(ClOOCl) over the ClOOCl formation rate constant k(rec). Here, we constrain the atmospherically effective J(ClOOCl) independent of k(rec), using ClO measured in the same air masses before and directly after sunrise during an aircraft flight that was part of the RECONCILE field campaign in the winter 2010 from Kiruna, Sweden. Over sunrise, when the ClO/ClOOCl system comes out of thermal equilibrium and the influence of the ClO recombination reaction is negligible, the increase in ClO concentrations is significantly faster than expected from J(ClOOCl) based on the absorption spectrum proposed by Pope et al. (2007), but does not warrant cross sections larger than recently published values by Papanastasiou et al. (2009). In particular, the existence of a significant ClOOCl absorption band longwards of 420 nm is not supported by our observations. The observed night-time ClO would not be consistent with a ClO/ClOOCl thermal equilibrium constant significantly higher than the one proposed by Plenge et al. (2005). Article in Journal/Newspaper Kiruna Forschungszentrum Jülich: JuSER (Juelich Shared Electronic Resources) Kiruna Lambda ENVELOPE(-62.983,-62.983,-64.300,-64.300) Atmospheric Chemistry and Physics 12 3 1353 1365
spellingShingle info:eu-repo/classification/ddc/550
J
Suminska-Ebersoldt, O.
Lehmann, R.
Volk, C. M.
Borrmann, S.
Rex, M.
Stroh, F.
von Hobe, M.
Wegner, T.
Grooß, J.-U.
Hösen, E.
Weigel, R.
Frey, W.
Griessbach, S.
Mitev, V.
Emde, C.
ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title_full ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title_fullStr ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title_full_unstemmed ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title_short ClOOCl photolysis at high solar zenith angles: analysis of the RECONCILE self-match flight
title_sort cloocl photolysis at high solar zenith angles: analysis of the reconcile self-match flight
topic info:eu-repo/classification/ddc/550
J
topic_facet info:eu-repo/classification/ddc/550
J
url https://juser.fz-juelich.de/record/18761
https://juser.fz-juelich.de/search?p=id:%22PreJuSER-18761%22