Abstract
A submersible microbial fuel cell (SMFC) was developed by immersing an anode electrode and a cathode chamber in an anaerobic reactor. Domestic wastewater was used as the medium and the inoculum in the experiments. The SMFC could successfully generate a stable voltage of 0.428 ± 0.003 V with a fixed 470 Ω resistor from acetate. From the polarization test, the maximum power density of 204 mW m-2 was obtained at current density of 595 mA m-2 (external resistance = 180 Ω). The power generation showed a saturation-type relationship as a function of wastewater strength, with a maximum power density (Pmax) of 218 mW m-2 and a saturation constant (Ks) of 244 mg L-1. The main limitations for achieving higher electricity production in the SMFC were identified as the high internal resistance at the electrolyte and the inefficient electron transfer at the cathode electrode. As the current increased, a large portion of voltage drop was caused by the ohmic (electrolyte) resistance of the medium present between two electrodes, although the two electrodes were closely positioned (about 3 cm distance; internal resistance = 35 ± 2 Ω). The open circuit potential (0.393 V vs. a standard hydrogen electrode) of the cathode was much smaller than the theoretical value (0.804 V). Besides, the short circuit potential of the cathode electrode decreased during the power generation in the SMFC. These results demonstrate that the SMFC could successfully generate electricity from wastewater, and has a great potential for electricity production from existing anaerobic reactors or other anaerobic environments such as sediments. The advantage of the SMFC is that no special anaerobic chamber (anode chamber) is needed, as existing anaerobic reactors can be used, where the cathode chamber and anode electrode are immersed.
| Original language | English |
|---|---|
| Pages (from-to) | 641-647 |
| Number of pages | 7 |
| Journal | Journal of Power Sources |
| Volume | 180 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 15 May 2008 |
Bibliographical note
Funding Information:The authors thank Lars Ellegaard for helping MFC construction and also thank Hector Garcia for his help with analytical measurements. This research was supported by Danish Agency for Science Technology and Innovation, 2104-05-0003.
Copyright:
Copyright 2008 Elsevier B.V., All rights reserved.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
Keywords
- Domestic wastewater
- Electricity
- Microbial fuel cell
- Power generation
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