Elucidating secondary organic aerosol from diesel and gasoline vehicles through detailed characterization of organic carbon emissions

Emissions from gasoline and diesel vehicles are predominant anthropogenic sources of reactive gas-phase organic carbon and key precursors to secondary organic aerosol (SOA) in urban areas. Their relative importance for aerosol formation is a controversial issue with implications for air quality cont...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2012-11, Vol.109 (45), p.18318-18323
Hauptverfasser: Gentner, Drew R, Isaacman, Gabriel, Worton, David R, Chan, Arthur W. H, Dallmann, Timothy R, Davis, Laura, Liu, Shang, Day, Douglas A, Russell, Lynn M, Wilson, Kevin R, Weber, Robin, Guha, Abhinav, Harley, Robert A, Goldstein, Allen H
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Sprache:eng
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Zusammenfassung:Emissions from gasoline and diesel vehicles are predominant anthropogenic sources of reactive gas-phase organic carbon and key precursors to secondary organic aerosol (SOA) in urban areas. Their relative importance for aerosol formation is a controversial issue with implications for air quality control policy and public health. We characterize the chemical composition, mass distribution, and organic aerosol formation potential of emissions from gasoline and diesel vehicles, and find diesel exhaust is seven times more efficient at forming aerosol than gasoline exhaust. However, both sources are important for air quality; depending on a region’s fuel use, diesel is responsible for 65% to 90% of vehicular-derived SOA, with substantial contributions from aromatic and aliphatic hydrocarbons. Including these insights on source characterization and SOA formation will improve regional pollution control policies, fuel regulations, and methodologies for future measurement, laboratory, and modeling studies.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1212272109