Enhanced electricity production from microbial fuel cells with plasma-modified carbon paper anode
- 10 May 2012
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Physical Chemistry Chemical Physics
- Vol. 14 (28), 9966-9971
- https://doi.org/10.1039/c2cp40873b
Abstract
Microbial fuel cells (MFC) provide a new opportunity for simultaneous electricity generation and waste treatment. An improvement in the anode capacity of MFCs is essential for their scale-up and commercialization. In this work we demonstrate, for the first time, that plasma-based ion implantation could be used as an effective approach to modify carbon paper as an anode for MFC to improve its electricity-generating capacity. After the N+ ion implantation, a decreased charge-transfer resistance is achieved, which is attributed to the increased C–N bonds after N+ ion implantation. In addition, the surface roughness and hydrophobicity are also changed, which favor microbial adhesion on the anode surface. The cyclic voltammetry results show that both the electrochemical activity and the electron transfer are enhanced remarkably, leading to better MFC performance compared to the control. Such a plasma surface modification technique provides an effective way to modify the electrode for enhancing MFC performance for power generation.Keywords
This publication has 36 references indexed in Scilit:
- Performance improvement of air-cathode single-chamber microbial fuel cell using a mesoporous carbon modified anodeJournal of Power Sources, 2011
- Gold line array electrodes increase substrate affinity and current density of electricity-producing G. sulfurreducens biofilmsEnergy & Environmental Science, 2010
- Surface Structures and Osteoblast Activity on Biomedical Polytetrafluoroethylene Treated by Long-Pulse, High-Frequency Oxygen Plasma Immersion Ion ImplantationAdvanced Engineering Materials, 2010
- A polypyrrole/anthraquinone-2,6-disulphonic disodium salt (PPy/AQDS)-modified anode to improve performance of microbial fuel cellsBiosensors and Bioelectronics, 2009
- Ammonia treatment of carbon cloth anodes to enhance power generation of microbial fuel cellsElectrochemistry Communications, 2007
- Microbial Fuel Cells: Methodology and TechnologyEnvironmental Science & Technology, 2006
- Harvesting energy from the marine sediment–water interface IIBiosensors and Bioelectronics, 2006
- Direct electron transfer and electrocatalysis of hemoglobin adsorbed onto electrodeposited mesoporous tungsten oxideElectrochemistry Communications, 2005
- Electricity generation by direct oxidation of glucose in mediatorless microbial fuel cellsNature Biotechnology, 2003
- Electronic structure of nitrogen-carbon alloysdetermined by photoelectron spectroscopyPhysical Review B, 1998