• Title of article

    Evaluation of the thermal/optical reflectance method for quantification of elemental carbon in sediments Original Research Article

  • Author/Authors

    Yongming Han، نويسنده , , Junji Cao، نويسنده , , Zhisheng An، نويسنده , , Judith C. Chow، نويسنده , , John G. Watson، نويسنده , , Zhangdong Jin، نويسنده , , Kochy Fung، نويسنده , , Suixin Liu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    8
  • From page
    526
  • To page
    533
  • Abstract
    The IMPROVE thermal/optical reflectance (TOR) method, commonly used for EC quantification in atmospheric aerosols, is applied to soils and sediments and compared with a thermochemical method commonly applied to these non-atmospheric samples. TOR determines elemental carbon (EC) by an optical method, but it also yields thermally defined EC fractions in a 2% O2/98% He oxidizing atmosphere at 550 °C (EC1), 700 °C (EC2), and 800 °C (EC3). Replicate TOR TC, OC, and EC values exhibited precisions of not, vert, similar ±10% as determined from multiple analyses of the same samples. EC abundances relative to total mass concentrations were within the ranges reported by other methods for diesel exhaust soot, n-hexane soot, wood and rice chars, and coals, as well as for environmental matrices. A direct comparison with the chemothermal (CTO) method of Gustafson et al. for ten soil and sediment samples demonstrated that almost all of the OC and EC1 are eliminated, as is part of the EC2. The CTO soot carbon is bounded by the EC3 and EC2 + EC3 fractions of the IMPROVE TOR analysis. It might be possible to adjust these fractions to obtain better agreement between atmospheric aerosol and soil/sediment analysis methods. Given its linking the EC measurement in the atmosphere to sediments, the TOR method will not only provide useful information on the explanation and comparison between different environmental matrices, but also can be used to derive information on global cycling of EC.
  • Keywords
    elemental carbon , black carbon , Thermal/optical analy i , ediment , Aero ol
  • Journal title
    Chemosphere
  • Serial Year
    2007
  • Journal title
    Chemosphere
  • Record number

    725423