Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008

Trajectory statistical methods that combine in situ measurements of trace gas or particle concentrations and back trajectories calculated for corresponding times have proven to be a valuable approach in atmospheric research; especially in investigating air pollution episodes, but also in e.g. tracin...

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Main Authors: M. Kulmala, H. Junninen, M. Dal Maso, M. Hulkkonen, L. Riuttanen
Format: Article
Language:English
Published: Copernicus Publications 2013-02-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/13/2153/2013/acp-13-2153-2013.pdf
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spelling doaj-d91705bfe0bd43658269f4aaba3febb42020-11-24T21:05:21ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242013-02-011342153216410.5194/acp-13-2153-2013Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008M. KulmalaH. JunninenM. Dal MasoM. HulkkonenL. RiuttanenTrajectory statistical methods that combine in situ measurements of trace gas or particle concentrations and back trajectories calculated for corresponding times have proven to be a valuable approach in atmospheric research; especially in investigating air pollution episodes, but also in e.g. tracing the air mass history related to high vs. low concentrations of aerosol particles of different sizes at the receptor site. A concentration field method was fine-tuned to take the presumable horizontal error in calculated trajectories into account, tested with SO<sub>2</sub> and validated by comparison against EMEP (European Monitoring and Evaluation Programme) emission data. In this work we apply the improved method for characterizing the transport of atmospheric SO<sub>2</sub>, NO<sub>x</sub>, O<sub>3</sub> and aerosol particles of different size modes to a Finnish measurement station located in Hyytiälä (61°51' N, 24°17' E). Our method did not reproduce the EMEP emission soures, but proved useful for qualitative analysis on where the measured compounds come from, from one measurement station point of view. We applied it to study trends and seasonal variation in atmospheric pollutant transport during 13 yr at the SMEAR II (Station for Measuring Ecosystem-Atmosphere Interactions) station.http://www.atmos-chem-phys.net/13/2153/2013/acp-13-2153-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Kulmala
H. Junninen
M. Dal Maso
M. Hulkkonen
L. Riuttanen
spellingShingle M. Kulmala
H. Junninen
M. Dal Maso
M. Hulkkonen
L. Riuttanen
Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
Atmospheric Chemistry and Physics
author_facet M. Kulmala
H. Junninen
M. Dal Maso
M. Hulkkonen
L. Riuttanen
author_sort M. Kulmala
title Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
title_short Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
title_full Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
title_fullStr Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
title_full_unstemmed Trajectory analysis of atmospheric transport of fine particles, SO<sub>2</sub>, NO<sub>x</sub> and O<sub>3</sub> to the SMEAR II station in Finland in 1996&ndash;2008
title_sort trajectory analysis of atmospheric transport of fine particles, so<sub>2</sub>, no<sub>x</sub> and o<sub>3</sub> to the smear ii station in finland in 1996&ndash;2008
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2013-02-01
description Trajectory statistical methods that combine in situ measurements of trace gas or particle concentrations and back trajectories calculated for corresponding times have proven to be a valuable approach in atmospheric research; especially in investigating air pollution episodes, but also in e.g. tracing the air mass history related to high vs. low concentrations of aerosol particles of different sizes at the receptor site. A concentration field method was fine-tuned to take the presumable horizontal error in calculated trajectories into account, tested with SO<sub>2</sub> and validated by comparison against EMEP (European Monitoring and Evaluation Programme) emission data. In this work we apply the improved method for characterizing the transport of atmospheric SO<sub>2</sub>, NO<sub>x</sub>, O<sub>3</sub> and aerosol particles of different size modes to a Finnish measurement station located in Hyytiälä (61°51' N, 24°17' E). Our method did not reproduce the EMEP emission soures, but proved useful for qualitative analysis on where the measured compounds come from, from one measurement station point of view. We applied it to study trends and seasonal variation in atmospheric pollutant transport during 13 yr at the SMEAR II (Station for Measuring Ecosystem-Atmosphere Interactions) station.
url http://www.atmos-chem-phys.net/13/2153/2013/acp-13-2153-2013.pdf
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