Chemical characteristics assigned to trajectory clusters during the MINOS campaign

During the Mediterranean Intensive Oxidant Study (MINOS) in August 2001 a total of 14 measurement flights were performed with the DLR Falcon jet aircraft from Heraklion, Crete. One objective of this campaign was to investigate the role of long-range transport of pollutants into the Mediterranean...

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Main Authors: M. Traub, H. Fischer, M. de Reus, R. Kormann, H. Heland, H. Ziereis, H. Schlager, R. Holzinger, J. Williams, C. Warneke, J. de Gouw, J. Lelieveld
Format: Article
Language:English
Published: Copernicus Publications 2003-01-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/3/459/2003/acp-3-459-2003.pdf
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spelling doaj-b13d779fdec64e4daeba8ea481c93b572020-11-24T23:52:17ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242003-01-0132459468Chemical characteristics assigned to trajectory clusters during the MINOS campaignM. TraubH. FischerM. de ReusR. KormannH. HelandH. ZiereisH. SchlagerR. HolzingerJ. WilliamsC. WarnekeJ. de GouwJ. LelieveldDuring the Mediterranean Intensive Oxidant Study (MINOS) in August 2001 a total of 14 measurement flights were performed with the DLR Falcon jet aircraft from Heraklion, Crete. One objective of this campaign was to investigate the role of long-range transport of pollutants into the Mediterranean area. An analysis of 5-day back trajectories indicates that in the lower troposphere (0-4 km) air masses originated from eastern and western Europe, in the mid-troposphere (4-8 km) from the North Atlantic Ocean region and in the upper troposphere (8-14 km) from North Atlantic Ocean/North America (NANA) as well as South Asia. We allocated all back trajectories to clusters based on their ending height and source region. The mixing ratios of ozone, nitrogen oxide, total reactive oxidized nitrogen (NO<sub>y</sub>), formaldehyde, methanol, acetonitrile, acetone, peroxyacetyl nitrate (PAN), carbon dioxide, carbon monoxide and methane measured along the flight tracks are examined in relation to the different cluster trajectories. In the lower troposphere the mean trace gas mixing ratios of the eastern Europe cluster trajectories were significantly higher than those from western Europe. In the upper troposphere air from the NANA region seems to be influenced by the stratosphere, in addition, air masses were transported from South Asia, being influenced by strong convection in the Indian monsoon.http://www.atmos-chem-phys.net/3/459/2003/acp-3-459-2003.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Traub
H. Fischer
M. de Reus
R. Kormann
H. Heland
H. Ziereis
H. Schlager
R. Holzinger
J. Williams
C. Warneke
J. de Gouw
J. Lelieveld
spellingShingle M. Traub
H. Fischer
M. de Reus
R. Kormann
H. Heland
H. Ziereis
H. Schlager
R. Holzinger
J. Williams
C. Warneke
J. de Gouw
J. Lelieveld
Chemical characteristics assigned to trajectory clusters during the MINOS campaign
Atmospheric Chemistry and Physics
author_facet M. Traub
H. Fischer
M. de Reus
R. Kormann
H. Heland
H. Ziereis
H. Schlager
R. Holzinger
J. Williams
C. Warneke
J. de Gouw
J. Lelieveld
author_sort M. Traub
title Chemical characteristics assigned to trajectory clusters during the MINOS campaign
title_short Chemical characteristics assigned to trajectory clusters during the MINOS campaign
title_full Chemical characteristics assigned to trajectory clusters during the MINOS campaign
title_fullStr Chemical characteristics assigned to trajectory clusters during the MINOS campaign
title_full_unstemmed Chemical characteristics assigned to trajectory clusters during the MINOS campaign
title_sort chemical characteristics assigned to trajectory clusters during the minos campaign
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2003-01-01
description During the Mediterranean Intensive Oxidant Study (MINOS) in August 2001 a total of 14 measurement flights were performed with the DLR Falcon jet aircraft from Heraklion, Crete. One objective of this campaign was to investigate the role of long-range transport of pollutants into the Mediterranean area. An analysis of 5-day back trajectories indicates that in the lower troposphere (0-4 km) air masses originated from eastern and western Europe, in the mid-troposphere (4-8 km) from the North Atlantic Ocean region and in the upper troposphere (8-14 km) from North Atlantic Ocean/North America (NANA) as well as South Asia. We allocated all back trajectories to clusters based on their ending height and source region. The mixing ratios of ozone, nitrogen oxide, total reactive oxidized nitrogen (NO<sub>y</sub>), formaldehyde, methanol, acetonitrile, acetone, peroxyacetyl nitrate (PAN), carbon dioxide, carbon monoxide and methane measured along the flight tracks are examined in relation to the different cluster trajectories. In the lower troposphere the mean trace gas mixing ratios of the eastern Europe cluster trajectories were significantly higher than those from western Europe. In the upper troposphere air from the NANA region seems to be influenced by the stratosphere, in addition, air masses were transported from South Asia, being influenced by strong convection in the Indian monsoon.
url http://www.atmos-chem-phys.net/3/459/2003/acp-3-459-2003.pdf
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