Bacterial-fungal interactions enhance power generation in microbial fuel cells and drive dye decolourisation by an ex situ and in situ electro-Fenton process

被引:72
作者
Angeles Fernandez de Dios, Maria [1 ]
Gonzalez del Campo, Araceli [2 ]
Jesus Fernandez, Francisco [2 ]
Rodrigo, Manuel [2 ]
Pazos, Marta [1 ]
Angeles Sanroman, Maria [1 ]
机构
[1] Univ Vigo, Dept Chem Engn, Vigo 36310, Spain
[2] Univ Castilla La Mancha, Dept Chem Engn, ITQUIMA, E-13071 Ciudad Real, Spain
关键词
Advanced oxidation technology; Electro-Fenton; Decolourisation; Dye; MFC; HYDROGEN-PEROXIDE; DEGRADATION; SYSTEM; TECHNOLOGY; OXIDATION; CATALYST; MFCS;
D O I
10.1016/j.biortech.2013.08.084
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
In this work, the potential for sustainable energy production from wastes has been exploited using a combination fungus-bacterium in microbial fuel cell (MFC) and electro-Fenton technology. The fungus Trametes versicolor was grown with Shewanella oneidensis so that the bacterium would use the networks of the fungus to transport the electrons to the anode. This system generated stable electricity that was enhanced when the electro-Fenton reactions occurred in the cathode chamber. This configuration reached a stable voltage of approximately 1000 mV. Thus, the dual benefits of the in situ-designed MFC electro-Fenton, the simultaneous dye decolourisation and the electricity generation, were demonstrated. Moreover, the generated power was effectively used to drive an ex situ electro-Fenton process in batch and continuous mode. This newly developed MFC fungus-bacterium with an in situ electro-Fenton system can ensure a high power output and a continuous degradation of organic pollutants. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:39 / 46
页数:8
相关论文
共 34 条
[1]   Highways versus pipelines: contributions of two fungal transport mechanisms to efficient bioremediation [J].
Banitz, Thomas ;
Johst, Karin ;
Wick, Lukas Y. ;
Schamfuss, Susan ;
Harms, Hauke ;
Frank, Karin .
ENVIRONMENTAL MICROBIOLOGY REPORTS, 2013, 5 (02) :211-218
[2]   Electricity production by Geobacter sulfurreducens attached to electrodes [J].
Bond, DR ;
Lovley, DR .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2003, 69 (03) :1548-1555
[3]   Characterization of Electrochemical Activity of a Strain IS02-3 Phylogenetically Related to Aeromonas sp Isolated From a Glucose-Fed Microbial Fuel Cell [J].
Chung, Kyungmi ;
Okahe, Satoshi .
BIOTECHNOLOGY AND BIOENGINEERING, 2009, 104 (05) :901-910
[4]   A dual-chamber microbial fuel cell with conductive film-modified anode and cathode and its application for the neutral electro-Fenton process [J].
Feng, Chunhua ;
Li, Fangbai ;
Liu, Haiyang ;
Lang, Xuemei ;
Fan, Shuanshi .
ELECTROCHIMICA ACTA, 2010, 55 (06) :2048-2054
[5]   Non-catalyzed cathodic oxygen reduction at graphite granules in microbial fuel cells [J].
Freguia, Stefano ;
Rabaey, Korneel ;
Yuan, Zhiguo ;
Keller, Jurg .
ELECTROCHIMICA ACTA, 2007, 53 (02) :598-603
[6]   Synthesis of hydrogen peroxide in microbial fuel cell [J].
Fu, Lei ;
You, Shi-Jie ;
Yang, Feng-lin ;
Gao, Ming-ming ;
Fang, Xiao-hong ;
Zhang, Guo-quan .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2010, 85 (05) :715-719
[7]   Mycelia Promote Active Transport and Spatial Dispersion of Polycyclic Aromatic Hydrocarbons [J].
Furuno, Shoko ;
Foss, Susan ;
Wild, Ed ;
Jones, Kevin C. ;
Semple, Kirk T. ;
Harms, Hauke ;
Wick, Lukas Y. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (10) :5463-5470
[8]   Benthic Microbial Fuel Cell as Direct Power Source for an Acoustic Modem and Seawater Oxygen/Temperature Sensor System [J].
Gong, Yanming ;
Radachowsky, Sage E. ;
Wolf, Michael ;
Nielsen, Mark E. ;
Girguis, Peter R. ;
Reimers, Clare E. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (11) :5047-5053
[9]   Potential role of a novel psychrotolerant member of the family Geobacteraceae, Geopsychrobacter electrodiphilus gen. nov., sp nov., in electricity production by a marine sediment fuel cell [J].
Holmes, DE ;
Nicoll, JS ;
Bond, DR ;
Lovley, DR .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2004, 70 (10) :6023-6030
[10]   Using iron-loaded sepiolite obtained by adsorption as a catalyst in the electro-Fenton oxidation of Reactive Black 5 [J].
Iglesias, O. ;
Fernandez de Dios, M. A. ;
Pazos, M. ;
Sanroman, M. A. .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2013, 20 (09) :5983-5993