• Title of article

    Nutrient removal in a pilot and full scale constructed wetland, Putrajaya city, Malaysia

  • Author/Authors

    Sim، نويسنده , , Cheng Hua and Yusoff، نويسنده , , Mohd Kamil and Shutes، نويسنده , , Brian T. Ho، نويسنده , , Sinn Chye and Mansor، نويسنده , , Mashhor Mansor، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    11
  • From page
    307
  • To page
    317
  • Abstract
    Putrajaya Wetlands in Malaysia, a 200 ha constructed wetland system consisting of 24 cells, was created in 1997–1998 to treat surface runoff caused by development and agricultural activities from an upstream catchment before entering Putrajaya Lake (400 ha). It was designed for stormwater treatment, flood control and amenity use. The water quality improvement performance of a section of the wetland cells is described. The nutrient removal performance was 82.11% for total nitrogen, 70.73% for nitrate–nitrogen and 84.32% for phosphate, respectively, along six wetland cells from Upper North UN6 to UN1 from April to December 2004. nt removal in pilot scale tank systems, simulating a constructed wetland and planted with examples of common species at Putrajaya, the Common Reed Phragmites karka and Tube Sedge Lepironia articulata, and the capacity of these species to retain nutrients in above and below-ground plant biomass and substrate is reported. The uptake of nutrients by the Common Reed and Tube Sedge from the pilot tank system was 42.1% TKN; 28.9% P and 17.4% TKN; 26.1% P, respectively. trient uptake efficiency of the Common Reed was higher in above-ground than in below-ground tissue. The results have implications for plant species selection in the design of constructed wetlands in Malaysia and for optimizing the performance of these systems.
  • Keywords
    Constructed wetland , Nutrient removal , surface flow , Wetland plant
  • Journal title
    Journal of Environmental Management
  • Serial Year
    2008
  • Journal title
    Journal of Environmental Management
  • Record number

    1585195