• Title of article

    Combustion particles as ice nuclei in an urban environment: Evidence from single-particle mass spectrometry

  • Author/Authors

    Corbin، نويسنده , , J.C. and Rehbein، نويسنده , , P.J.G. and Evans، نويسنده , , G.J. and Abbatt، نويسنده , , J.P.D.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    7
  • From page
    286
  • To page
    292
  • Abstract
    This paper presents measurements of the single-particle composition of ice nuclei (IN) in downtown Toronto, Canada, made at 239 ± 1 K, 134 ± 2% relative humidity with respect to ice (RHi). IN were activated within the University of Toronto Continuous-Flow Diffusion Chamber (UT-CFDC), separated from background aerosol using a pumped counterflow virtual impactor (PCVI), and analyzed using a dual-polarity single-particle mass spectrometer (ATOFMS). To account for particles leaked by the PCVI, the ratio of particles observed at high RHi to low RHi was calculated. This ratio was greater than unity for EC (elemental carbon), BB (biomass burning) and dust particles, however only the increase in EC was statistically significant (1σ level) due to a low number of detected particles. The remaining particle categories were: metal-rich organic carbon (M/OC), potassium-rich OC (K/OC), OC potentially mixed with EC (OC/EC) and “other”, none of which were enhanced in number at high RHi. To complement the direct PCVI observations and enhance the number of spectra available, a second study was performed where particle composition and IN concentrations (CIN) were measured in parallel. IN concentrations were regressed against the same categories as above, and dust, BB and EC particles were identified as the best predictors of CIN. Consistency between these two methods provides increased confidence in their individual results and encourages additional study of these potential IN.
  • Keywords
    In , Single-particle mass spectrometry , Ice nucleation , ATOFMS , CVI , ice nuclei
  • Journal title
    Atmospheric Environment
  • Serial Year
    2012
  • Journal title
    Atmospheric Environment
  • Record number

    2239214