• Title of article

    Microbial-enzymatic-hybrid biological fuel cell with optimized growth conditions for Shewanella oneidensis DSP-10

  • Author/Authors

    Jared N. Roy، نويسنده , , Heather R. Luckarift، نويسنده , , Susan R. Sizemore، نويسنده , , Karen E. Farrington، نويسنده , , Carolin Lau، نويسنده , , Glenn R. Johnson، نويسنده , , Plamen Atanassov، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    5
  • From page
    123
  • To page
    127
  • Abstract
    In this work we present a biological fuel cell fabricated by combining a Shewanella oneidensis microbial anode and a laccase-modified air-breathing cathode. This concept is devised as an extension to traditional biochemical methods by incorporating diverse biological catalysts with the aim of powering small devices. In preparing the biological fuel cell anode, novel hierarchical-structured architectures and biofilm configurations were investigated. A method for creating an artificial biofilm based on encapsulating microorganisms in a porous, thin film of silica was compared with S. oneidensis biofilms that were allowed to colonize naturally. Results indicate comparable current and power densities for artificial and natural biofilm formations, based on growth characteristics. As a result, this work describes methods for creating controllable and reproducible bio-anodes and demonstrates the versatility of hybrid biological fuel cells.
  • Keywords
    Biofilm , Novel electrode materials , Enzymatic cathode , Microbial fuel cell , Shewanella oneidensis
  • Journal title
    Enzyme and Microbial Technology
  • Serial Year
    2013
  • Journal title
    Enzyme and Microbial Technology
  • Record number

    1186038