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Characterization of microbiologically influenced corrosion by comprehensive metagenomic analysis of an inland oil field

杀生物剂 基因组 腐蚀 生物 油田 管道运输 微生物种群生物学 生物技术 环境科学 环境工程 细菌 冶金 材料科学 古生物学 遗传学 基因 生物化学 化学 有机化学
作者
Badoor Nasser,Yoshimoto Saito,Mohammed Alarawi,Abdulmohsen A. Al-Humam,Katsuhiko Mineta,Takashi Gojobori
出处
期刊:Gene [Elsevier]
卷期号:774: 145425-145425 被引量:15
标识
DOI:10.1016/j.gene.2021.145425
摘要

Corrosion in pipelines and reservoir tanks in oil plants is a serious problem in the global energy industry because it causes substantial economic losses associated with frequent part replacement and can lead to potential damage to entire crude oil fields. Previous studies revealed that corrosion is mainly caused by microbial activities in a process currently termed microbiologically influenced corrosion or biocorrosion. Identifying the bacteria responsible for biocorrosion is crucial for its suppression. In this study, we analyzed the microbial communities present at corrosion sites in oil plant pipelines using comparative metagenomic analysis along with bioinformatics and statistics. We analyzed the microbial communities in pipelines in an oil field in which groundwater is used as injection water. We collected samples from four different facilities in the oil field. Metagenomic analysis revealed that the microbial community structures greatly differed even among samples from the same facility. Treatments such as biocide administration and demineralization at each location in the pipeline may have independently affected the microbial community structure. The results indicated that microbial inspection throughout the pipeline network is essential to prevent biocorrosion at industrial plants. By identifying the bacterial species responsible for biocorrosion, this study provides bacterial indicators to detect and classify biocorrosion. Furthermore, these species may serve as biomarkers to detect biocorrosion at an early stage. Then, appropriate management such as treatment with suitable biocides can be performed immediately and appropriately. Thus, our study will serve as a platform for obtaining microbial information related to biocorrosion to enable the development of a practical approach to prevent its occurrence.
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