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Accelerated cathodic reaction in microbial corrosion of iron due to direct electron uptake by sulfate-reducing bacteria

Corrosion Science · 2012 · Vol. 66 · pp. 88–96
H. VenzlaffDennis EnningJayendran SrinivasanKarl J. J. MayrhoferAchim Walter HasselFriedrich WiddelMartin Stratmann

Abstract

Microbially influenced iron corrosion by sulfate-reducing bacteria (SRB) is conventionally attributed to the chemical corrosiveness of H2S, facilitated abiotic H+-reduction at deposited FeS, and biological consumption of chemically formed (‘cathodic’) H2. However, recent studies with corrosive SRB indicated direct consumption of iron-derived electrons rather than of H2 as a crucial mechanism. Here, we conducted potentiodynamic measurements with iron electrodes colonized by corrosive SRB. They significantly stimulated the cathodic reaction, while non-corrosive yet H2-consuming control SRB had no effect. Inactivation of the colonizing bacteria significantly reduced current stimulation, thus confirming biological catalysis rather than an abiotic cathodic effect of FeS.

Corrosion Behavior and InhibitionMetal Extraction and BioleachingMicrobial Fuel Cells and BioremediationCathodic protectionSulfate-reducing bacteriaCorrosionChemistrySulfateAbiotic componentBacteriaIron bacteriaCatalysisInorganic chemistry

Funding

  • Deutsche Forschungsgemeinschaft
  • Max-Planck-Gesellschaft
Citations
477
FWCI
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Accelerated cathodic reaction in microbial corrosion of iron due to direct electron uptake by sulfate-reducing bacteria · Scinovex