AI Article Synopsis

  • Thermophilic bacterial communities can create thick biofilms on carbon steel, increasing corrosion in oil reservoirs through their metabolic products.
  • Nine bacterial strains were identified from crude oil and produced water samples, showing high hydrocarbon biodegradation efficiency, particularly isolates MN6, IR4, and IR2.
  • Key catabolic enzymes were induced during biodegradation, with the highest activities of alkane hydroxylase, alcohol dehydrogenase, and lipase observed in specific isolates, contributing to iron oxidation and corrosion of carbon steel.

Article Abstract

Thermophilic bacterial communities generate thick biofilm on carbon steel API 5LX and produce extracellular metabolic products to accelerate the corrosion process in oil reservoirs. In the present study, nine thermophilic biocorrosive bacterial strains belonging to and were isolated from the crude oil and produced water sample, and identified using 16S rRNA gene sequencing. The biodegradation efficiency of hydrocarbons was found to be high in the presence of bacterial isolates MN6 (82%), IR4 (94%) and IR2 (87%). During the biodegradation process, induction of the catabolic enzymes such as alkane hydroxylase, alcohol dehydrogenase and lipase were also examined in these isolates. Among them, the highest activity of alkane hydroxylase (130 µmol mg protein) in IR4, alcohol dehydrogenase (70 µmol mg protein) in IR2, and higher lipase activity in IR4 (60 µmol mg protein) was observed. Electrochemical impedance spectroscopy and X-ray diffraction data showed that these isolates oxidize iron into ferrous/ferric oxides as the corrosion products on the carbon steel surface, whilst the crude oil hydrocarbon served as a sole carbon source for bacterial growth and development in such extreme environments.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6372418PMC
http://dx.doi.org/10.1007/s13205-019-1604-0DOI Listing

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