• Title of article

    Combustion-assisted CO2 capture using MECC membranes

  • Author/Authors

    Steven R. Sherman، نويسنده , , Joshua R. Gray، نويسنده , , Kyle S. Brinkman، نويسنده , , Shih-Ping Kevin Huang، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    10
  • From page
    323
  • To page
    332
  • Abstract
    Mixed Electron and Carbonate ion Conductor (MECC) membranes have been proposed as a means to separate CO2 from power plant flue gas. Here a modified MECC CO2 capture process is analyzed that supplements retentate pressurization and permeate evacuation as a means to create a CO2 driving force with a process assisted by the catalytic combustion of syngas on the permeate side of the membrane. The combustion reactions consume transported oxygen, making it unavailable for the backwards transport reaction. With this change, the MECC capture system becomes exothermic, and steam for electricity production may be generated from the waste heat. Greater than 90% of the CO2 in the flue gas may be captured, and a compressed CO2 product stream is produced. A fossil-fueled power plant using this process would consume 12% more fuel per unit electricity produced than a power plant with no CO2 capture system, and has the potential to meet U.S. DOEʹs goal that deployment of a CO2 capture system at a fossil-fueled power plant should not increase the cost of electricity from the combined facility by more than 30%.
  • Keywords
    Flue gas , Power plant , Mixed Electron Carbonate Conductor , membrane , CO2 capture
  • Journal title
    Journal of Membrane Science
  • Serial Year
    2012
  • Journal title
    Journal of Membrane Science
  • Record number

    1357575