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Formation of Biofilm on SUS 316 L Exposed to Natural Seawater*

机译:在SUS 316 L上形成生物膜的形成暴露在天然海水上*

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摘要

One of major causes of microbially influenced corrosion of stainless steels in marine environment is formation of biofilms on the surfaces by microorganisms. It has been known that the corrosion potential of stainless steel exposed to natural seawater is ennobled and that a biofilm formed on a metallic surface is thickening and structurally heterogeneous with the passage of exposure time. In this paper, we intend to discuss the relation between structural characteristics of biofilms formed on SUS 316 L in natural seawater and the exposure time.Test pieces of SUS 316 L were exposed to natural seawater for 3 days-60 days. Open-circuit potentials of test pieces in natural seawater were measured and biofilms on test pieces were observed with Atomic Force Microscope (AFM) in natural seawater. The thicknesses of biofilms were measured by the in-situ observation with AFM. Then test pieces were dried and observed with an optical microscope, a laser microscope and AFM in the atmosphere.Open-circuit potentials were ennobled and the biofilms in seawater thickened as the exposure time passed. The biofilms were growing partially and the major species in the biofilms shifted from bacteria to diatoms with the passage of exposure time.It is concluded that thickening of biofilms on SUS 316 L causes ennoblement of potentials in natural seawater and that biofilms become more heterogeneous with diatoms on the surfaces.
机译:微生物环境中的不锈钢腐蚀的主要原因之一是通过微生物在表面上形成生物膜。已知暴露于天然海水的不锈钢的腐蚀电位是彻底的,并且在金属表面上形成的生物膜是在暴露时间的通过的情况下加厚和结构性异质。在本文中,我们打算讨论在天然海水中形成的生物膜结构特征的关系,并且暴露于自然海水中的暴露时间3天 - 60天。测量天然海水中试验件的开路电位,并在天然海水中用原子力显微镜(AFM)观察到试验片的生物膜。通过用AFM原位观察测量生物膜的厚度。然后用光学显微镜干燥并观察试样,在大气中进行光学显微镜,激光显微镜和AFM。随着暴露时间通过,将电路电位膨胀,在海水中加入生物膜。部分生物膜部分地生长,生物膜中的主要物种随着暴露时间的通过,生物膜从细菌转移到硅藻中。得出结论是,生物膜对SUS 316的增厚导致天然海水中的潜力,并且生物膜与硅藻更加异质在表面上。

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