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Microscopical Observation of the Marine Bacterium Vibrio Natriegeus Growth on Metallic Corrosion

机译:海洋细菌弧菌生长对金属腐蚀的显微观察

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Biofilm formation and the adsorption of nonsulfate-reducing marine bacterium Vibrio natriegens (V. natriegens) to different metallic surfaces have been studied by atomic force microscopy (AFM). The nature of extracellular polymeric substance (EPS) has been monitored through the force-distance curve. EPS may act as adhesive binding adjacent cells and thus further enhance the aggregation of microbes during cluster formation due to its adhesiveness in nature. The AFM images supplied the change of the morphology of microbial cells and colonies, the distribution of microbial colonies, and the presence of EPS on the surfaces with immersion. Results showed that the biofilms formed on the surfaces increased in thickness and heterogeneity with time and that 3-7 days was the proliferation period of the bacteria on metallic surfaces. The corrosion type of the metals by V. natriegens could be confirmed as typical pitting attack through scanning electron microscopy (SEM) observation.
机译:生物膜的形成和非硫酸盐还原海洋细菌弧菌(V. natriegens)到不同金属表面的吸附已经通过原子力显微镜(AFM)进行了研究。已经通过力-距离曲线监测了细胞外聚合物质(EPS)的性质。 EPS本质上具有粘附性,因此可以充当与相邻细胞粘合的粘合剂,从而进一步增强簇形成过程中微生物的聚集。 AFM图像提供了微生物细胞和菌落的形态变化,微生物菌落的分布以及浸没表面上EPS的存在。结果表明,表面上形成的生物膜的厚度和异质性随时间增加,并且细菌在金属表面上的增殖期为3-7天。通过扫描电子显微镜(SEM)观察,可以确认钠曲霉对金属的腐蚀类型为典型的点蚀。

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