Published December 17, 2007 | Version v1
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Electro-active bio-films: formation, characterization and mechanisms

Description

Some bacteria, which are able to exchange electrons with a conductive material without mediator form on conductive surfaces electro-active bio-films. This bacterial property has been recently discovered (2001). Objectives of this work are to develop electro-active bio-films in various natural environments from indigenous flora, then through complementary electrochemical techniques (chrono-amperometry and cyclic voltammetry), to evaluate electro-activity of isolates coming from so-formed bio-films and to characterize mechanisms of electron transfer between bacteria and materials. First, electro-active bio-films have been developed under chrono-amperometry in garden compost and in water coming from Guyana mangrove. These bio-films were respectively able to use an electrode as electron acceptor (oxidation) or as electron donor (reduction). In compost, results obtained in chrono-amperometry and cyclic voltammetry suggest a two-step electron transfer: slow substrate consumption, then rapid electron transfer between bacteria and the electrode. Thereafter, the ability to reduce oxygen was demonstrated with cyclic voltammetry for facultative aerobic isolates from compost bio-films (Enterobacter spp. and Pseudomonas spp.) and for aerobic isolates obtained from marine electro-active bio-films (Roseobacter spp. in majority). Finally, bio-films inducing current increase in chrono-amperometry were developed in bioreactor with synthetic medium from a pure culture of isolates. Hence, for the first time, electro-activity of several anaerobic strains of Geobacter bremensis isolated from compost bio-films was highlighted. (author)

Abstract (French)

Certaines bacteries, capables d'echanger des electrons avec un materiau conducteur sans l'aide de mediateur, forment sur la surface conductrice des bio-films electroactifs. Cette propriete bacterienne a ete recemment decouverte (2001). Les objectifs de ce travail sont de developper des bio-films electroactifs dans divers environnements naturels a partir de la flore indigene, puis par des methodes electrochimiques complementaires, chronoamperometrie et voltammetrie cyclique, d'evaluer l'electroactivite d'isolats issus de bio-films ainsi formes et de caracteriser les mecanismes du transfert d'electrons entre bacteries et materiau. Tout d'abord, des bio-films electroactifs ont ete developpes en chronoamperometrie dans du terreau et de l'eau provenant de la mangrove guyanaise. Ces bio-films sont respectivement capables d'utiliser une electrode comme accepteur d'electrons (oxydation) ou comme donneur (reduction). Dans le terreau, les resultats obtenus en chronoamperometrie et en voltammetrie cyclique suggerent un transfert electronique en deux etapes: consommation lente du substrat puis transfert rapide des electrons entre les bacteries et l'electrode. Ensuite, la capacite a catalyser la reduction de l'oxygene a ete demontree par voltammetrie cyclique pour des isolats aerobies facultatifs issus des bio-films du terreau (Enterobacter spp. et Pseudornonas spp.) et des isolats aerobies obtenus a partir de bio-films marins (majoritairement Roseobacter spp.). Enfin, des bio-films generant une augmentation du courant en chronoamperometrie ont ete developpes en bioreacteur sur milieu synthetique a partir d'une culture pure d'isolats. Ainsi, pour la premiere fois, l'electroactivite de plusieurs souches anaerobies de Geobacter bremensis isolees des bio-films du terreau a ete mise en evidence. (auteur)

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Additional details

Additional titles

Original title (French)
bio-films electroactifs: forming, caracterisation et mecanismes

Publishing Information

Imprint Pagination
244 p.
Report number
FRNC-TH--8428

Optional Information

Notes
176 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS website for current contact and E-mail addresses: http://www.iaea.org/inis/contacts/