Corrosion of carbon steel by bacteria from North Sea offshore seawater injection systems: laboratory investigation

Bioelectrochemistry. 2014 Jun:97:76-88. doi: 10.1016/j.bioelechem.2013.09.006. Epub 2013 Oct 9.

Abstract

Influence of sulfidogenic bacteria, from a North Sea seawater injection system, on the corrosion of S235JR carbon steel was studied in a flow bioreactor; operating anaerobically for 100days with either inoculated or filtrated seawater. Deposits formed on steel placed in reactors contained magnesium and calcium minerals plus iron sulfide. The dominant biofilm-forming organism was an anaerobic bacterium, genus Caminicella, known to produce hydrogen sulfide and carbon dioxide. Open Circuit Potentials (OCP) of steel in the reactors was, for nearly the entire test duration, in the range -800<E(OCP)/mV (vs. SCE)<-700. Generally, the overall corrosion rate, expressed as 1/(Rp/Ω), was lower in the inoculated seawater though they varied significantly on both reactors. Initial and final corrosion rates were virtually identical, namely initial 1/(Rp/Ω)=2×10(-6)±5×10(-7) and final 1/(Rp/Ω)=1.1×10(-5)±2.5×10(-6). Measured data, including electrochemical noise transients and statistical parameters (0.05<Localized Index<1; -5<Skewness<-5; Kurtosis>45), suggested pitting on steel samples within the inoculated environment. However, the actual degree of corrosion could neither be directly correlated with the electrochemical data and nor with the steel corrosion in the filtrated seawater environment. Further laboratory tests are thought to clarify the noticed apparent discrepancies.

Keywords: Bacterium; Carbon steel; Corrosion; Seawater injection.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biofilms / growth & development*
  • Bioreactors
  • Carbon / chemistry*
  • Corrosion*
  • Equipment Design
  • Gram-Negative Anaerobic Straight, Curved, and Helical Rods / physiology*
  • North Sea
  • Seawater / microbiology*
  • Steel / chemistry*
  • Sulfides / metabolism

Substances

  • Sulfides
  • Steel
  • Carbon