• Title of article

    Chemical composition of urban airborne particulate matter in Ulaanbaatar

  • Author/Authors

    Nishikawa، نويسنده , , Masataka and Matsui، نويسنده , , Ichiro and Batdorj، نويسنده , , Dashdondog and Jugder، نويسنده , , Dulam and Mori، نويسنده , , Ikuko and Shimizu، نويسنده , , Atsushi and Sugimoto، نويسنده , , Nobuo and Takahashi، نويسنده , , Katsuyuki، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    6
  • From page
    5710
  • To page
    5715
  • Abstract
    Atmospheric pollution caused by airborne particulate matter in the winter season in Ulaanbaatar, Mongolia is a very serious problem. However, there is a complete lack of scientific observation data to define the situation prior to any remediation. PM10 and PM2.5 average monthly values obtained by continuous monitoring showed the concentrations of particles of both size categories exceeded 100 μg m−3 during November to February (winter). PM10 particles were sampled with filters in January (i.e. during the heating period) and June (i.e.non-heating period) of 2008 in central Ulaanbaatar. To determine the composition of urban airborne particulate matter we analyzed a range of ionic components, multiple elements including heavy metals, and organic and inorganic carbon (soot). We also measured the stable carbon isotope ratio of the soot. Total carbon (sum of organic carbon and inorganic carbon) accounted for 47% of the mass of the PM10 during the heating period and 33% during the non-heating period, and was the largest component of urban airborne particulate matter in Ulaanbaatar. Stable isotope ratios (δ13C) of soot generated during the heating period (−23.4 ± 0.2‰) approximated the ratios for coal used in Ulaanbaatar (−21.3 to −24.4‰), while the ratios during the non-heating period (−27.1 ± 0.4‰) were clearly different from the coal values. In the heating period, a very high correlation was observed between soot and organic carbon, SO42–, NO3−, F−, Zn, As, and Pb, and we concluded that they were derived from coal combustion along with soot. In addition, the concentrations and their ratios relative to each other of Al, Fe, Ca, K, Na, Mg, and Mn hardly differed between the heating period and the non-heating period, and it was concluded that they were derived from soil dust.
  • Keywords
    Ulaanbaatar , Urban airborne particulate matter , Chemical composition , Coal , Soil dust , Stable carbon isotope ratio
  • Journal title
    Atmospheric Environment
  • Serial Year
    2011
  • Journal title
    Atmospheric Environment
  • Record number

    2238086