Advanced source apportionment of carbonaceous aerosols by coupling offline AMS and radiocarbon size-segregated measurements over a nearly 2-year period

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Vlachou , Athanasia; Daellenbach , Kaspar; Bozzetti , Carlo; Chazeau , Benjamin; Salazar , Gary; Szidat , Soenke; Jaffrezo , Jean-Luc; Hueglin , Christoph; Baltensperger , Urs; Haddad , Imad El; Prévôt , André ,; (2018)
  • Publisher: European Geosciences Union
  • Journal: Atmospheric Chemistry and Physics (issn: 1680-7316, eissn: 1680-7324)
  • Related identifiers: doi: 10.7892/boris.116501, doi: 10.5194/acp-18-6187-2018
  • Subject: Chemistry | [ SDU.OCEAN ] Sciences of the Universe [physics]/Ocean, Atmosphere | QD1-999 | [ SDE.ES ] Environmental Sciences/Environmental and Society | [SDE.MCG]Environmental Sciences/Global Changes | Physics | [SDE.ES]Environmental Sciences/Environmental and Society | [SDU.OCEAN]Sciences of the Universe [physics]/Ocean, Atmosphere | [ CHIM.ANAL ] Chemical Sciences/Analytical chemistry | QC1-999 | [ SDE.MCG ] Environmental Sciences/Global Changes | 540 Chemistry | [CHIM.ANAL]Chemical Sciences/Analytical chemistry

Carbonaceous aerosols are related to adverse human health effects. Therefore, identification of their sources and analysis of their chemical composition is important. The offline AMS (aerosol mass spectrometer) technique offers quantitative separation of organic ... View more
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