• Title of article

    Comparing the short and long term stability of biodegradable, ceramic and cation exchange membranes in microbial fuel cells

  • Author/Authors

    Winfield، نويسنده , , Jonathan and Chambers، نويسنده , , Lily D. and Rossiter، نويسنده , , Jonathan and Ieropoulos، نويسنده , , Ioannis، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    7
  • From page
    480
  • To page
    486
  • Abstract
    The long and short-term stability of two porous dependent ion exchange materials; starch-based compostable bags (BioBag) and ceramic, were compared to commercially available cation exchange membrane (CEM) in microbial fuel cells. Using bi-directional polarisation methods, CEM exhibited power overshoot during the forward sweep followed by significant power decline over the reverse sweep (38%). The porous membranes displayed no power overshoot with comparably smaller drops in power during the reverse sweep (ceramic 8%, BioBag 5.5%). The total internal resistance at maximum power increased by 64% for CEM compared to 4% (ceramic) and 6% (BioBag). Under fixed external resistive loads, CEM exhibited steeper pH reductions than the porous membranes. Despite its limited lifetime, the BioBag proved an efficient material for a stable microbial environment until failing after 8 months, due to natural degradation. These findings highlight porous separators as ideal candidates for advancing MFC technology in terms of cost and operation stability.
  • Keywords
    Microbial fuel cell , Power overshoot , proton exchange membrane , Biodegradation , Ceramic
  • Journal title
    Bioresource Technology
  • Serial Year
    2013
  • Journal title
    Bioresource Technology
  • Record number

    1934531