• Title of article

    Apportioning black carbon to sources using highly time-resolved ambient measurements of organic molecular markers in Pittsburgh

  • Author/Authors

    Lambe، نويسنده , , Andrew T. and Logue، نويسنده , , Jennifer M. and Kreisberg، نويسنده , , Nathan M. and Hering، نويسنده , , Susanne V. and Worton، نويسنده , , David R. and Goldstein، نويسنده , , Allen H. and Donahue، نويسنده , , Neil M. and Robinson، نويسنده , , Allen L.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    10
  • From page
    3941
  • To page
    3950
  • Abstract
    We present highly time-resolved measurements of organic molecular markers in downtown Pittsburgh, which are used to investigate sources contributing to atmospheric aerosols in the area. Two-hour average concentrations of condensed-phase and semivolatile organic species were measured using a Thermal Desorption Aerosol GC/MS (TAG). Concentrations for mobile source markers like hopanes had regular diurnal and day-of-week patterns. Pairing high time-resolved measurements with meteorological data helped identify contributions from known point sources for markers correlated with wind direction. Black carbon (BC), volatile organic compounds (VOCs) and organic molecular markers were apportioned to sources using the Chemical Mass Balance (CMB) and Positive Matrix Factorization (PMF) receptor models. Diesel and gasoline mobile source factors were identified as the main sources of BC in the downtown Pittsburgh area, contributing 67% and 20% of the study-average BC. 13% of the BC was associated with a source factor tentatively identified as an industrial or regional source. The high time resolution of the TAG has the potential to provide important new insight into source apportionment efforts using organic molecular marker measurements.
  • Keywords
    black carbon , molecular markers , Thermal desorption aerosol GC/MS (TAG) , PMF , CMB , source apportionment , ORGANIC AEROSOLS
  • Journal title
    Atmospheric Environment
  • Serial Year
    2009
  • Journal title
    Atmospheric Environment
  • Record number

    2235272