• Title of article

    Probing Hg evasion from surface waters of two Chinese hyper/meso-eutrophic reservoirs Original Research Article

  • Author/Authors

    Xuewu Fu، نويسنده , , Xinbin Feng، نويسنده , , Qi Wan، نويسنده , , Bo Meng ، نويسنده , , Haiyu Yan، نويسنده , , Yanna Guo، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2010
  • Pages
    10
  • From page
    5887
  • To page
    5896
  • Abstract
    Measurements of water/air exchange flux of gaseous elemental mercury (GEM) were conducted in a hyper-eutrophic reservoir and a meso-eutrophic reservoir in southwest China in both warm and cold seasons by using a dynamic flux chamber (DFC) method coupled with an automatic gaseous Hg analyzer. Both strong diurnal and seasonal variations of GEM fluxes were observed. The diurnal cycle of the GEM flux was more pronounced during sunny days compared to cloudy and rainy days, which highlights the effect of solar intensity on the GEM flux. GEM fluxes in warm seasons were considerably higher (2.5 to 4.1 times higher) than in cold seasons, which was attributed to the combined factors including meteorological factors, water quality parameters and water Hg concentrations. Clear variation in GEM fluxes was observed between the two reservoirs. Mean GEM fluxes in the hyper-eutrophic reservoir (WJD) (3.2–20.1 ng m−2 h−1) were significantly higher than those in the meso-eutrophic reservoir (SFY) (0.6–4.4 ng m−2 h−1). Evasion of Hg played a distinct role in the mass balance of Hg in the two reservoirs. In WJD, evasion was the second most important mechanism for Hg losses from the reservoir (17.5% of the total losses); whereas in SFY, loss of Hg via volatilization constituted an extremely little portion to the total losses of Hg (0.8%).
  • Keywords
    GEM flux , Subtropical reservoir , Spatial and temporal variation , Mass balance , Eutrophication
  • Journal title
    Science of the Total Environment
  • Serial Year
    2010
  • Journal title
    Science of the Total Environment
  • Record number

    987113