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Sub-micron atmospheric aerosols in the surroundings of Marseille and Athens : physical characterization and new particle formation

Petaja, T. (författare)
Kerminen, V. -M (författare)
Dal Maso, M. (författare)
visa fler...
Junninen, H. (författare)
Koponen, I. K. (författare)
Hussein, T. (författare)
Stockholms universitet,Institutionen för tillämpad miljövetenskap (ITM)
Aalto, P. P. (författare)
Andronopoulos, S. (författare)
Robin, D. (författare)
Hameri, K. (författare)
Bartzis, J. G. (författare)
Kulmala, M. (författare)
visa färre...
 (creator_code:org_t)
2007
2007
Engelska.
Ingår i: Atmospheric Chemistry And Physics. - 1680-7316 .- 1680-7324. ; 7:10, s. 2705-2720
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The properties of atmospheric aerosol particles in Marseille and Athens were investigated. The studies were performed in Marseille, France, during July 2002 and in Athens, Greece, during June 2003. The aerosol size distribution and the formation and growth rates of newly formed particles were characterized using Differential Mobility Particle Sizers. Hygroscopic properties were observed using a Hygroscopic Tandem Differential Mobility Analyzer setup. During both campaigns, the observations were performed at suburban, almost rural sites, and the sites can be considered to show general regional background behavior depending on the wind direction. At both sites there were clear pattern for both aerosol number concentration and hygroscopic properties. Nucleation mode number concentration increased during the morning hours indicating new particle formation, which was observed during more than 30% of the days. The observed formation rate was typically more than 1 cm(-3) s(-1), and the growth rate was between 1.2 - 9.9 nm h(-1). Based on hygroscopicity measurements in Athens, the nucleation mode size increase was due to condensation of both water insoluble and water soluble material. However, during a period of less anthropogenic influence, the growth was to a larger extent due to water insoluble components. When urban pollution was more pronounced, growth due to condensation of water soluble material dominated.

Nyckelord

differential mobility analyzer
nucleation mode particles
hygroscopic properties
air-pollution
size distributions
particulate matter
background sites
growth
area
escompte
NATURAL SCIENCES
NATURVETENSKAP

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