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| Content Provider | World Health Organization (WHO)-Global Index Medicus |
|---|---|
| Author | Carmona-Martínez, Alessandro A. Bernet, Nicolas Trably, Eric Pous, Narcís Vilajeliu-Pons, Anna Colprim, Jesús Balaguer, M. Dolors Bañeras, Lluis Fiset, Erika Puig, Sebastià |
| Description | Country affiliation: Spain Author Affiliation: Pous N ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain.); Carmona-Martínez AA ( INRA, UR0050, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, Narbonne F-11100, France.); Vilajeliu-Pons A ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain.); Fiset E ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain.); Bañeras L ( Molecular Microbial Ecology Group, Institute of Aquatic Ecology, University of Girona, Spain.); Trably E ( INRA, UR0050, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, Narbonne F-11100, France.); Balaguer MD ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain.); Colprim J ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain.); Bernet N ( INRA, UR0050, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, Narbonne F-11100, France.); Puig S ( LEQUiA, Institute of the Environment, University of Girona, C/ Maria Aurèlia Capmany, 69, Facultat de Ciències, E-17071 Girona, Spain. Electronic address: sebastia@lequia.udg.cat.) |
| Abstract | Up to date a few electroactive bacteria embedded in biofilms are described to catalyze both anodic and cathodic reactions in bioelectrochemical systems (i.e. bidirectional electron transfer). How these bacteria transfer electrons to or from the electrode is still uncertain. In this study the extracellular electron transfer mechanism of bacteria within an electroactive biofilm was investigated by using cyclic voltammetry (CV) and differential pulse voltammetry (DPV). First, a mature anodic electroactive biofilm was developed from an activated sludge sample (inoculum), acetate as electron donor and a poised electrode (+397mV vs. SHE). Later, this biofilm was 'switched' to biocathodic conditions by feeding it with a medium containing nitrates and poising the electrode at -303mV vs. SHE. The electrochemical characterization indicated that both, acetate oxidation and nitrate reduction took place at a similar formal potential of -175±05 and -175±34mV vs. SHE, respectively. The biofilm was predominantly composed by Geobacter sp. at both experimental conditions. Taken together, the results indicated that both processes could be catalyzed by using the same electron conduit, and most likely by the same bacterial consortium. Hence, this study suggests that electroactive bacteria within biofilms could use the same electron transfer conduit for catalyzing anodic and cathodic reactions. |
| ISSN | 09565663 |
| Volume Number | 75 |
| e-ISSN | 18734235 |
| Journal | Biosensors and Bioelectronics |
| Language | English |
| Publisher | Elsevier |
| Publisher Date | 2016-01-15 |
| Publisher Place | Great Britain (UK) |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Biofilms Biosensing Techniques Methods Geobacter Chemistry Acetates Cell Respiration Electrodes Electrons Nitrates Oxidation-reduction Journal Article Research Support, Non-u.s. Gov't Discipline Biotechnology |
| Content Type | Text |
| Resource Type | Article |
| Subject | Nanoscience and Nanotechnology Medicine Biophysics Biomedical Engineering Biotechnology Electrochemistry |
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