• Title of article

    Low stoichiometry operation of a proton exchange membrane fuel cell employing the interdigitated flow field – A modeling study

  • Author/Authors

    Berning، نويسنده , , T. and Kوr، نويسنده , , S.K.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    13
  • From page
    8477
  • To page
    8489
  • Abstract
    A multiphase fuel cell model based on computational fluid dynamics is used to investigate the possibility of operating a proton exchange membrane fuel cell at low stoichiometric flow ratios (ξ < 1.5) employing the interdigitated flow field design and using completely dry inlet gases. A case study of two different operating temperatures and two different operating pressures is presented. In all cases the cathode side stoichiometric flow ratio was varied from ξc = 1.5 to 1.2, and the anode side varied to as low as ξa = 1.05. It is found that operating at ambient pressure leads to a generally dryer cell, and the only possibility to prevent membrane dry-out is to operate at or below 70 °C. The cell is generally better humidified at an elevated pressure, and here it is found that the cathode channels will become flooded when the operating temperature is too low, e.g. 70 °C, while membrane hydration levels of λ = 7–10 can be achieved at 80 °C. Operation at stoichiometric flow ratios as low as ξ = 1.2 at the cathode side and ξ = 1.05 at the anode side appear feasible. If this can be verified, it would allow open-ended anode operation without recirculation or flow shifting, thus significantly reducing system complexity and cost.
  • Keywords
    PEMFC , Operating conditions , Low stoichiometry operation , Water management , Water uptake layer
  • Journal title
    International Journal of Hydrogen Energy
  • Serial Year
    2012
  • Journal title
    International Journal of Hydrogen Energy
  • Record number

    1671600