Microbiologically influenced corrosion of 304L stainless steel caused by an alga associated bacterium Halomonas titanicae
Algae are reported to be corrosive, while little is known about the role of the algae associated bacteria in the corrosion process. In the present study, Halomonas titanicae was isolated from a culture of an alga strain, Spirulina platensis, and identified through 16S rRNA gene analysis. Corrosion b...
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Published in: | Journal of materials science & technology Vol. 37; pp. 200 - 206 |
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Abstract | Algae are reported to be corrosive, while little is known about the role of the algae associated bacteria in the corrosion process. In the present study, Halomonas titanicae was isolated from a culture of an alga strain, Spirulina platensis, and identified through 16S rRNA gene analysis. Corrosion behavior of 304L stainless steel (SS) coupons in the presence and absence of H. titanicae was characterized by using electrochemical measurements and surface analysis. The results showed that H. titanicae significantly accelerated the corrosion rate and decreased the pitting potential of 304L SS in the biotic medium. After removal of the corrosion products and biofilms, severe pitting corrosion caused by H. titanicae was observed. The largest pit depth after 14 d reached 6.6 μm, which was 5.5 times higher than that of the sterile control (1.2 μm). This is the first report revealing that an alga associated bacterium can induce microbiologically influenced corrosion (MIC), and a further concern is raised that whether algae play a role in the MIC process. |
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AbstractList | Algae are reported to be corrosive, while little is known about the role of the algae associated bacteria in the corrosion process. In the present study, Halomonas titanicae was isolated from a culture of an alga strain, Spirulina platensis, and identified through 16S rRNA gene analysis. Corrosion behavior of 304L stainless steel (SS) coupons in the presence and absence of H. titanicae was characterized by using electrochemical measurements and surface analysis. The results showed that H. titanicae significantly accelerated the corrosion rate and decreased the pitting potential of 304L SS in the biotic medium. After removal of the corrosion products and biofilms, severe pitting corrosion caused by H. titanicae was observed. The largest pit depth after 14 d reached 6.6 μm, which was 5.5 times higher than that of the sterile control (1.2 μm). This is the first report revealing that an alga associated bacterium can induce microbiologically influenced corrosion (MIC), and a further concern is raised that whether algae play a role in the MIC process. |
Author | Xu, Dake Lekbach, Yassir Li, Zhong Dong, Yuqiao Ibnsouda Koraichi, Saad El Abed, Soumya Wang, Fuhui |
Author_xml | – sequence: 1 givenname: Yuqiao surname: Dong fullname: Dong, Yuqiao organization: Shenyang National Laboratory for Materials Science, Northeastern University, Shenyang 110819, China – sequence: 2 givenname: Yassir surname: Lekbach fullname: Lekbach, Yassir organization: Shenyang National Laboratory for Materials Science, Northeastern University, Shenyang 110819, China – sequence: 3 givenname: Zhong surname: Li fullname: Li, Zhong organization: Shenyang National Laboratory for Materials Science, Northeastern University, Shenyang 110819, China – sequence: 4 givenname: Dake surname: Xu fullname: Xu, Dake email: xudake@mail.neu.edu.cn organization: Shenyang National Laboratory for Materials Science, Northeastern University, Shenyang 110819, China – sequence: 5 givenname: Soumya surname: El Abed fullname: El Abed, Soumya organization: Laboratory of Microbial Biotechnology, Faculty of Science and Technology, Sidi Mohamed Ben Abdellah University, B.P. 2202, Fez, Morocco – sequence: 6 givenname: Saad surname: Ibnsouda Koraichi fullname: Ibnsouda Koraichi, Saad organization: Laboratory of Microbial Biotechnology, Faculty of Science and Technology, Sidi Mohamed Ben Abdellah University, B.P. 2202, Fez, Morocco – sequence: 7 givenname: Fuhui surname: Wang fullname: Wang, Fuhui organization: Shenyang National Laboratory for Materials Science, Northeastern University, Shenyang 110819, China |
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Snippet | Algae are reported to be corrosive, while little is known about the role of the algae associated bacteria in the corrosion process. In the present study,... |
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Title | Microbiologically influenced corrosion of 304L stainless steel caused by an alga associated bacterium Halomonas titanicae |
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