Articles | Volume 14, issue 5
https://doi.org/10.5194/bg-14-1075-2017
https://doi.org/10.5194/bg-14-1075-2017
Research article
 | 
08 Mar 2017
Research article |  | 08 Mar 2017

Soil concentrations and soil–atmosphere exchange of alkylamines in a boreal Scots pine forest

Antti-Jussi Kieloaho, Mari Pihlatie, Samuli Launiainen, Markku Kulmala, Marja-Liisa Riekkola, Jevgeni Parshintsev, Ivan Mammarella, Timo Vesala, and Jussi Heinonsalo

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Cited articles

Angelino, S., Suess, D. T., and Prather, K. A.: Formation of aerosol particles from reactions of secondary and tertiary alkylamine: characterization by aerosol time-of-flight mass spectrometry, Environ. Sci. Technol., 35, 3130–3138, 2001.
AVAA: Soil and meteorological data https://avaa.tdata.fi/web/smart, last access: 2 March 2017.
Bäck, J., Aaltonen, H., Hellén, H., Kajos, M. K., Patokoski, J., Taipale, R., Pumpanen, J., and Heinonsalo, J.: Variable emissions of microbial volatile organic compounds (MVOCs) from root-associated fungi isolated from Scots pine, Atmos. Environ., 44, 3651–3659, 2010.
Baldocchi, D.: A multi-layer model for estimating sulfur-dioxide deposition to a deciduous oak forest canopy, Atmos. Environ., 22, 869–884, 1988.
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Short summary
The alkylamines are important precursors in secondary aerosol formation in boreal forests. We quantified alkylamine concentrations in fungal species present in boreal forests in order to estimate soil as a source of atmospheric alkylamines. Based on our knowledge we estimated possible soil–atmosphere exchange of these compounds. The results shows that the boreal forest soil could act as a source of alkylamines depending on environmental conditions and studied compound.
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