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Molecular-Size-Separated Brown Carbon Absorption for Biomass-Burning Aerosol at Multiple Field Sites

  • Robert A. Di Lorenzo
  • , Rebecca A. Washenfelder
  • , Alexis R. Attwood
  • , Hongyu Guo
  • , Lu Xu
  • , Nga L. Ng
  • , Rodney J. Weber
  • , Karsten Baumann
  • , Eric Edgerton
  • , Cora J. Young

Research output: Contribution to journalArticlepeer-review

Abstract

Biomass burning is a known source of brown carbon aerosol in the atmosphere. We collected filter samples of biomass-burning emissions at three locations in Canada and the United States with transport times of 10 h to >3 days. We analyzed the samples with size-exclusion chromatography coupled to molecular absorbance spectroscopy to determine absorbance as a function of molecular size. The majority of absorption was due to molecules >500 Da, and these contributed an increasing fraction of absorption as the biomass-burning aerosol aged. This suggests that the smallest molecular weight fraction is more susceptible to processes that lead to reduced light absorption, while larger-molecular-weight species may represent recalcitrant brown carbon. We calculate that these large-molecular-weight species are composed of more than 20 carbons with as few as two oxygens and would be classified as extremely low volatility organic compounds (ELVOCs). (Graph Presented).

Original languageEnglish
Pages (from-to)3128-3137
Number of pages10
JournalEnvironmental Science and Technology
Volume51
Issue number6
DOIs
StatePublished - Mar 21 2017

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