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Grantee Research Project Results

Journal Publications Details for Grant Number R832166

Near Real-Time Speciation of Organic Aerosols for Source Apportionment

RFA: Source Apportionment of Particulate Matter (2004)

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Journal Article (5)
Reference Type Reference Title Journal Author Citation Progress Report Year Document Sources
Journal Article Rapid sampling of individual organic aerosol species in ambient air with the photoionization aerosol mass spectrometer. AEROSOL SCIENCE AND TECHNOLOGY Dreyfus MA, Johnston MV Dreyfus MA, Johnston MV. Rapid sampling of individual organic aerosol species in ambient air with the photoionization aerosol mass spectrometer. Aerosol Science and Technology 2008;42(1):18-27. R832166 (2007)
R832166 (Final)
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Journal Article Organic aerosol source apportionment from highly time-resolved molecular composition measurements. ATMOSPHERIC ENVIRONMENT Dreyfus MA, Adou K, Zucker SM, Johnston MV Dreyfus MA, Adou K, Zucker SM, Johnston MV. Organic aerosol source apportionment from highly time-resolved molecular composition measurements. Atmospheric Environment 2009;43(18):2901-2910. R832166 (Final)
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Journal Article Oligomers in the early stage of biogenic secondary organic aerosol formation and growth. Environmental Science and Technology Heaton KJ, Dreyfus MA, Wang S, Johnston MV Heaton KJ, Dreyfus MA, Wang S, Johnston MV. Oligomers in the early stage of biogenic secondary organic aerosol formation and growth. Environmental Science & Technology 2007;41(17):6129-6136. R832166 (2007)
R832166 (Final)
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Journal Article Chemistry of particle inception and growth during [alpha]-pinene ozonolysis. ENVIRONMENTAL SCIENCE & TECHNOLOGY Tolocka MP, Heaton KJ, Dreyfus MA, Wang S, Zordan CA, Saul TD, Johnston MV Tolocka MP, Heaton KJ, Dreyfus MA, Wang S, Zordan CA, Saul TD, Johnston MV. Chemistry of particle inception and growth during [alpha]-pinene ozonolysis. Environmental Science & Technology 2006;40(6):1843-1848. R832166 (2005)
R832166 (2006)
R832166 (2007)
R832166 (Final)
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Journal Article Time-resolved chemical composition of individual nanoparticles in urban air. ENVIRONMENTAL SCIENCE & TECHNOLOGY Zordan CA, Wang S, Johnston MV Zordan CA, Wang S, Johnston MV. Time-resolved chemical composition of individual nanoparticles in urban air. Environmental Science & Technology 2008;42(17):6631-6636. R832166 (Final)
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

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