Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N

In this paper we analyze aerosol particle composition measurements from five research missions conducted between 2014 and 2018 sampling the upper troposphere and lower stratosphere (UTLS), to assess the meridional extent of particles containing meteoric material. Additional data sets from a ground b...

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Main Authors: Schneider, J., Weigel, R., Klimach, T., Dragoneas, A., Appel, O., Hünig, A., Molleker, S., Köllner, F., Clemen, H., Eppers, O., Hoppe, P., Hoor, P., Mahnke, C., Krämer, M., Rolf, C., Grooß, J., Zahn, A., Obersteiner, F., Ravegnani, F., Ulanovsky, A., Schlager, H., Scheibe, M., Diskin, G., DiGangi, J., Nowak, J., Zöger, M., Borrmann, S.
Format: Report
Language:English
Published: 2020
Subjects:
Online Access:http://hdl.handle.net/21.11116/0000-0007-96F6-A
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spelling ftpubman:oai:pure.mpg.de:item_3274397 2023-08-27T04:08:12+02:00 Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N Schneider, J. Weigel, R. Klimach, T. Dragoneas, A. Appel, O. Hünig, A. Molleker, S. Köllner, F. Clemen, H. Eppers, O. Hoppe, P. Hoor, P. Mahnke, C. Krämer, M. Rolf, C. Grooß, J. Zahn, A. Obersteiner, F. Ravegnani, F. Ulanovsky, A. Schlager, H. Scheibe, M. Diskin, G. DiGangi, J. Nowak, J. Zöger, M. Borrmann, S. 2020-08-10 http://hdl.handle.net/21.11116/0000-0007-96F6-A eng eng info:eu-repo/semantics/altIdentifier/doi/10.5194/acp-2020-660 http://hdl.handle.net/21.11116/0000-0007-96F6-A Atmospheric Chemistry and Physics Discussions info:eu-repo/semantics/workingPaper 2020 ftpubman https://doi.org/10.5194/acp-2020-660 2023-08-02T00:25:19Z In this paper we analyze aerosol particle composition measurements from five research missions conducted between 2014 and 2018 sampling the upper troposphere and lower stratosphere (UTLS), to assess the meridional extent of particles containing meteoric material. Additional data sets from a ground based study and from a low altitude aircraft mission are used to confirm the existence of meteoric material in lower tropospheric particles. Single particle laser ablation techniques with bipolar ion detection were used to measure the chemical composition of particles in a size range of approximately 150 nm to 3 μm. The five UTLS aircraft missions cover a latitude range from 15 to 68° N, altitudes up to 21 km, and a potential temperature range from 280 to 480 K. In total, 338 363 single particles were analyzed, of which 147 338 particles were measured in the stratosphere. Of these particles, 50 688 were characterized by high abundances of magnesium, iron, and rare iron oxide compounds, together with sulfuric acid. This particle type was found almost exclusively in the stratosphere (48 610 particles) and is interpreted as meteoric material immersed or dissolved within stratospheric sulfuric acid particles. Below the tropopause, the observed fraction of this particle type decreases sharply. However, small fractional abundances were observed below 3000 m a.s.l. in the Canadian Arctic and also at the Jungfraujoch high altitude station (3600 m a.s.l.). Thus, the removal pathway by sedimentation and/or mixing into the troposphere is confirmed. In the tropical lower stratosphere, only a small fraction (< 10 %) of of the analyzed particles contain meteoric material. In contrast, in the extratropics the observed fraction of meteoric particles reaches 20–40 % directly above the tropopause. At potential temperature levels of more than 40 K above the thermal tropopause, particles containing meteoric material were found in higher relative abundances than near the tropopause and, at these altitudes, occurring at similar ... Report Arctic Max Planck Society: MPG.PuRe Arctic
institution Open Polar
collection Max Planck Society: MPG.PuRe
op_collection_id ftpubman
language English
description In this paper we analyze aerosol particle composition measurements from five research missions conducted between 2014 and 2018 sampling the upper troposphere and lower stratosphere (UTLS), to assess the meridional extent of particles containing meteoric material. Additional data sets from a ground based study and from a low altitude aircraft mission are used to confirm the existence of meteoric material in lower tropospheric particles. Single particle laser ablation techniques with bipolar ion detection were used to measure the chemical composition of particles in a size range of approximately 150 nm to 3 μm. The five UTLS aircraft missions cover a latitude range from 15 to 68° N, altitudes up to 21 km, and a potential temperature range from 280 to 480 K. In total, 338 363 single particles were analyzed, of which 147 338 particles were measured in the stratosphere. Of these particles, 50 688 were characterized by high abundances of magnesium, iron, and rare iron oxide compounds, together with sulfuric acid. This particle type was found almost exclusively in the stratosphere (48 610 particles) and is interpreted as meteoric material immersed or dissolved within stratospheric sulfuric acid particles. Below the tropopause, the observed fraction of this particle type decreases sharply. However, small fractional abundances were observed below 3000 m a.s.l. in the Canadian Arctic and also at the Jungfraujoch high altitude station (3600 m a.s.l.). Thus, the removal pathway by sedimentation and/or mixing into the troposphere is confirmed. In the tropical lower stratosphere, only a small fraction (< 10 %) of of the analyzed particles contain meteoric material. In contrast, in the extratropics the observed fraction of meteoric particles reaches 20–40 % directly above the tropopause. At potential temperature levels of more than 40 K above the thermal tropopause, particles containing meteoric material were found in higher relative abundances than near the tropopause and, at these altitudes, occurring at similar ...
format Report
author Schneider, J.
Weigel, R.
Klimach, T.
Dragoneas, A.
Appel, O.
Hünig, A.
Molleker, S.
Köllner, F.
Clemen, H.
Eppers, O.
Hoppe, P.
Hoor, P.
Mahnke, C.
Krämer, M.
Rolf, C.
Grooß, J.
Zahn, A.
Obersteiner, F.
Ravegnani, F.
Ulanovsky, A.
Schlager, H.
Scheibe, M.
Diskin, G.
DiGangi, J.
Nowak, J.
Zöger, M.
Borrmann, S.
spellingShingle Schneider, J.
Weigel, R.
Klimach, T.
Dragoneas, A.
Appel, O.
Hünig, A.
Molleker, S.
Köllner, F.
Clemen, H.
Eppers, O.
Hoppe, P.
Hoor, P.
Mahnke, C.
Krämer, M.
Rolf, C.
Grooß, J.
Zahn, A.
Obersteiner, F.
Ravegnani, F.
Ulanovsky, A.
Schlager, H.
Scheibe, M.
Diskin, G.
DiGangi, J.
Nowak, J.
Zöger, M.
Borrmann, S.
Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
author_facet Schneider, J.
Weigel, R.
Klimach, T.
Dragoneas, A.
Appel, O.
Hünig, A.
Molleker, S.
Köllner, F.
Clemen, H.
Eppers, O.
Hoppe, P.
Hoor, P.
Mahnke, C.
Krämer, M.
Rolf, C.
Grooß, J.
Zahn, A.
Obersteiner, F.
Ravegnani, F.
Ulanovsky, A.
Schlager, H.
Scheibe, M.
Diskin, G.
DiGangi, J.
Nowak, J.
Zöger, M.
Borrmann, S.
author_sort Schneider, J.
title Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
title_short Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
title_full Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
title_fullStr Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
title_full_unstemmed Aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° N
title_sort aircraft-based observation of meteoric material in lower stratospheric aerosol particles between 15 and 68° n
publishDate 2020
url http://hdl.handle.net/21.11116/0000-0007-96F6-A
geographic Arctic
geographic_facet Arctic
genre Arctic
genre_facet Arctic
op_source Atmospheric Chemistry and Physics Discussions
op_relation info:eu-repo/semantics/altIdentifier/doi/10.5194/acp-2020-660
http://hdl.handle.net/21.11116/0000-0007-96F6-A
op_doi https://doi.org/10.5194/acp-2020-660
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