Nitrifying biocathode enables effective electricity generation and sustainable wastewater treatment with microbial fuel cell

Hung Thuan Tran*, Dae Hee Kim, Se Jin Oh, Kashif Rasool, Doo Hyun Park, Rui Hong Zhang, Dae Hee Ahn

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

8 Citations (Scopus)

Abstract

Simultaneous organics removal and nitrification using a novel nitrifying biocathode microbial fuel cell (MFC) reactor were investigated in this study. Remarkably, the introduction of nitrifying biomass into the cathode chamber caused higher voltage outputs than that of MFC operated with the abiotic cathode. Results showed the maximum power density increased 18% when cathode was run under the biotic condition and fed by nitrifying medium with alkalinity/NH4+-N ratio of 8 (26 against 22mW/m 2). The voltage output was not differentiated when NH 4+-N concentration was increased from 50 to 100 mg/L under such alkalinity/NH4+-N ratio. However, interestingly, the cell voltage rose significantly when the alkalinity/NH4 +-N ratio was decreased to 6. Consequently, the maximum power density increased 68% in compared with the abiotic cathode MFC (37 against 22mW/m 2). Polarization curves demonstrated that both activation and concentration losses were lowered during the period of nitrifying biocathode operation. Ammonium was totally nitrified and mostly converted to nitrate in all cases of the biotic cathode conditions. High COD removal efficiency (98%) was achieved. In light of the results presented here, the application of nitrifying biocathode is not only able to integrate the nitrogen and carbon removal but also to enhance the power generation in MFC system. Our system can be suggested to open up a new feasible way for upgrading and retrofitting the existing wastewater treatment plant by the use of MFC-based technologies.

Original languageEnglish
Pages (from-to)1803-1808
Number of pages6
JournalWater Science and Technology
Volume59
Issue number9
DOIs
Publication statusPublished - 2009
Externally publishedYes

Keywords

  • Microbial fuel cell
  • Nitrification
  • Nitrifying biocathode

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