4.7 Article

Real-time monitoring of electrochemically active biofilm developing behavior on bioanode by using EQCM and ATR/FTIR

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 209, Issue -, Pages 781-789

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2014.12.047

Keywords

Electrochemically active biofilm; Biofilm formation; Cell biomass; EQCM; ATR/FTIR; Microbial fuel cell

Funding

  1. National Natural Science Foundation of China [21375107]
  2. University of Alicante [CTQ2013-44083-P]

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In the current study, the relationship between current and biomass and bio-adhesion mechanism of electrogenic biofilm on electrode were investigated using EQCM and ATR-SEIRAS linking electrochemistry. The results indicated that cellular biomass of biofilm on QCM-crystal surface showed maximum value of 6.0 mu g/cm(2) in initial batch and 11.5 mu g/cm(2) in the second batch on mature biofilm, producing a similar maximum current density of 110 mu A/mu g. Especially, the optimum cell biomass linking high electricity production ratio (110 mu A/mu g) occurred before maximum biomass coming, implying that over-growth mature biofilm is not an optimum state for enhancing power output of MFCs. On the other hand, the spectra using ATR-SEIRAS technique linking electrochemistry obviously exhibited water structure adsorption change at early biofilm formation and meanwhile the water adsorption accompanied the adsorbed bacteria and the bound cells population on the electrode increased with time. Meanwhile, the direct contact of bacteria and electrode via outer-membrane protein can be confirmed via a series spectra shift at amide I and amide II modes and water movement from negative bands displacing by adsorbed bacteria. Our study provided supplementary information about the interaction between the microbes and electrode beyond traditional electrochemistry. (C) 2014 Elsevier B.V. All rights reserved.

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