Articles | Volume 18, issue 3
https://doi.org/10.5194/acp-18-2155-2018
https://doi.org/10.5194/acp-18-2155-2018
Research article
 | 
14 Feb 2018
Research article |  | 14 Feb 2018

Insights into organic-aerosol sources via a novel laser-desorption/ionization mass spectrometry technique applied to one year of PM10 samples from nine sites in central Europe

Kaspar R. Daellenbach, Imad El-Haddad, Lassi Karvonen, Athanasia Vlachou, Joel C. Corbin, Jay G. Slowik, Maarten F. Heringa, Emily A. Bruns, Samuel M. Luedin, Jean-Luc Jaffrezo, Sönke Szidat, Andrea Piazzalunga, Raquel Gonzalez, Paola Fermo, Valentin Pflueger, Guido Vogel, Urs Baltensperger, and André S. H. Prévôt

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Cited articles

Allan, J. D., Williams, P. I., Morgan, W. T., Martin, C. L., Flynn, M. J., Lee, J., Nemitz, E., Phillips, G. J., Gallagher, M. W., and Coe, H.: Contributions from transport, solid fuel burning and cooking to primary organic aerosols in two UK cities, Atmos. Chem. Phys., 10, 647–668, https://doi.org/10.5194/acp-10-647-2010, 2010. 
Aubriet, F. and Carré, V.: Potential of laser mass spectrometry for the analysis of environmental dust particles – a review, Anal. Chim. Acta, 659, 34–54, https://doi.org/10.1016/j.aca.2009.11.047, 2010. 
BFE (Bundesamt für Energie Schweiz): Schweizerische Holzenergiestatistik: Erhebung für das Jahr 2013, Bundesamt für Energie Schweiz, Ittigen, 2013. 
Birch, M. E. and Cary, R. A.: Elemental carbon-based method for monitoring occupational exposures to particulate diesel exhaust, Aerosol Sci. and Tech., 25, 221–241, https://doi.org/10.1080/02786829608965393, 1996. 
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A novel offline LDI-MS method was developed to analyse particulate matter (PM) collected at multiple sites in central Europe during the entire year of 2013. PM sources were identified by positive matrix factorization. Wood burning emissions were separated according to the burning conditions; inefficient burns had a larger impact on air quality in southern Alpine valleys than in northern Switzerland. Moreover, primary tailpipe exhaust was distinguished from aged/secondary traffic emissions.
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