• Title of article

    ACTIVITY, STRUCTURE, AND STRATIFICATION OF MEMBRANEATTACHED METHANOTROPHIC BIOFILMS COMETABOLICALLY DEGRADING TRICHLOROETHYLENE

  • Author/Authors

    Noguera، Daniel R. نويسنده , , Clapp، Lee W. نويسنده , , Regan، John M. نويسنده , , Ali، Firdaus نويسنده , , Newman، Jack D. نويسنده , , Park، Jae K. نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 1999
  • Pages
    -152
  • From page
    153
  • To page
    0
  • Abstract
    A dynamic model that describes the biodegradation of secondary substrates through oxygenase reactions in biofilms has been developed. The model incorporates intracellular reducing power, in the form of NADH, as a link between the rate of utilization of primary substrates and the biodegradation of secondary substrates. The reaction kinetics were integrated into a diffusive biofilm model with internal and external mass transfer limitations and then combined into a continuous flow reactor model. Preliminary evaluation of the model has demonstrated that mass transfer limitations substantively reduced the removal of the secondary substrate as compared to a suspended growth reactor with an equivalent mass of biomass. A sensitivity analysis revealed that model predictions of the removal of secondary substrate were highly sensitive to the parameters describing the availability of reducing power and to the compound-specific biodegradation kinetic parameters.
  • Keywords
    Structure , trichloroethylene , Biofilm , cometabolism , in situ hybridization , Membrane , methanotroph , Methylosinus trichosporium OB3b , microcolony , silicone , stratification
  • Journal title
    Water Science and Technology
  • Serial Year
    1999
  • Journal title
    Water Science and Technology
  • Record number

    18025