• Title of article

    Monsoonal-type climate or land-use management: Understanding their role in the mobilization of nitrate and DOC in a mountainous catchment

  • Author/Authors

    Svenja Bartsch، نويسنده , , V. M. Chowdary and Stefan Peiffer ، نويسنده , , Christopher L. Shope، نويسنده , , Sebastian Arnhold، نويسنده , , Jong-Jin Jeong، نويسنده , , Ji-Hyung Park، نويسنده , , Jaesung Eum، نويسنده , , Bomchul Kim، نويسنده , , Jan H. Fleckenstein، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    14
  • From page
    149
  • To page
    162
  • Abstract
    The linkage between hydrologic dynamics and the delivery of nitrate and DOC (dissolved organic carbon) to streams was studied in the Haean catchment, a mixed land-use mountainous catchment in South Korea. Three monsoonal precipitation events were analyzed, which varied in total rainfall amount (39–70 mm) and intensities (mean: 1.6–5.6 mm h−1), by high-resolution (2–4 h interval) stream water-quality sampling along the topographic elevation gradient of the catchment, from an upland deciduous forest stream, over areas intensively used for agriculture (dryland farming and rice paddies) down to the catchment outlet. The dynamics of river-aquifer exchange were investigated at two piezometer transects at mid and lower elevations. DOC and nitrate sources and their transport pathways to the receiving surface waters differed between the forested and the agricultural stream site. In the forest stream, elevated DOC concentrations (max: 3.5 mgC l−1) during precipitation events were due to hydrologic flushing of soluble organic matter in upper soil horizons, with a strong dependency on pre-storm wetness conditions. Nitrate contributions to the forested stream occurred along shallow subsurface transport pathways. At the agricultural sites stream DOC concentrations were considerably higher (max: 23.5 mgC l−1) supplied from adjacent rice paddies. The highest in-stream nitrate concentrations (max: 4.1 mgN l−1) occurred at river reaches located in the lower agricultural part of the catchment, affected by groundwater inputs. Groundwater nitrate concentrations were high (max: 7.4 mgN l−1) owing to chemical fertilizer leaching from dryland fields forced by monsoonal rainfalls.
  • Keywords
    Nitrate , Dissolved organic carbon , Monsoonal-type climate , Land-use type , River-aquifer exchange dynamics , Topography
  • Journal title
    Journal of Hydrology
  • Serial Year
    2013
  • Journal title
    Journal of Hydrology
  • Record number

    1096041