Long-term operation of double chambered microbial fuel cell for bio-electro denitrification

Bioprocess Biosyst Eng. 2016 Jun;39(6):893-900. doi: 10.1007/s00449-016-1568-y. Epub 2016 Feb 19.

Abstract

The main aim of this study is to investigate the performance of organic oxidation and denitrification of the system under long-term operation. The MFC reactor was operated in continuous mode for 180 days. Nitrate was successfully demonstrated as terminal electron acceptor, where nitrate was reduced at the cathode using electron provided by acetate oxidation at the anode. The removal efficiencies of chemical oxygen demand (COD) and nitrate were higher in the closed circuit system than in open circuit system. Both COD and nitrate reduction improved with the increase of organic loading and subsequently contributed to higher power output. The maximum nitrate removal efficiency was 88 ± 4 % (influent of 141 ± 14 mg/L). The internal resistant was 50 Ω, which was found to be low for a double chambered MFC. The maximum power density was 669 mW/m(3) with current density of 3487 mA/m(3).

Keywords: Biocathode; Bioelectricity generation; Denitrification; Double chambered MFC; Nitrate removal.

MeSH terms

  • Bioelectric Energy Sources*
  • Denitrification*
  • Wastewater
  • Water Purification

Substances

  • Waste Water