• Title of article

    Screening model for volatile pollutants in dual porosity soils

  • Author/Authors

    Mohamed M. Hantush، نويسنده , , Rao.S. Govindaraju، نويسنده , , Miguel A. Marino ، نويسنده , , Zhonglong Zhang، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2002
  • Pages
    17
  • From page
    58
  • To page
    74
  • Abstract
    This paper develops mass fraction models for transport and fate of agricultural pollutants in structured two-region soils. Mass fraction index models, based on a semi-infinite domain solution, are derived that describe leaching at depth, vapor losses through soil surface, absorption, and degradation in the dynamic- and stagnant-water soil regions. The models predict that leaching is the result of the combined effect of the upward vapor-phase transport relative to downward advection, residence time relative to half-life, dispersion, and lateral diffusive mass transfer. Simulations show that leached fraction of volatile compounds does not always decrease monotonically with increased residence time relative to the pollutant half-life, as a result of complex interactions among the different physical and biochemical processes. The results show that leaching, volatilization, and degradation losses can be affected significantly by lateral diffusive mass transfer into immobile-water regions and advection relative to dispersion (i.e. Peclet number) in the mobile-water regions. It is shown that solute diffusion into the immobile phase and subsequent biochemical decay reduces leaching and vapor losses through soil surface. Potential use of the modified leaching index for the screening of selected pesticides is illustrated for different soil textures and infiltration rates. The analysis may be useful to the management of pesticides and the design of landfills.
  • Keywords
    Solute transport , Soil , Pesticides , Screening models , Biochemical decay , Adsorption , Dispersion , Mass transfer , Vapor transport , Mobile–immobile phase
  • Journal title
    Journal of Hydrology
  • Serial Year
    2002
  • Journal title
    Journal of Hydrology
  • Record number

    1097906