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Laboratory-Based Model of Microbiologically Induced Corrosion of Copper

机译:基于实验室的微生物引起的铜腐蚀模型

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摘要

The interactions of bacteria isolated from corroded copper coupons on thin films of copper evaporated onto germanium internal reflection elements were evaluated nondestructively in real time by attentuated total reflectance Fourier transform infrared spectroscopy. The films were stable in the presence of flowing or static sterile culture medium. When exposed to and colonized by the bacterium CCI 8, the copper thin film corroded. Corrosion was enhanced under quiescent conditions. In conjunction with corrosion of the copper thin film was an increase in the concentration of polysaccharide material at the copper-biofilm interface. A different bacterium (CCI 11) did not corrode the copper thin film, and the establishment of this bacterium on the copper surface prevented corrosion of the thin film by CCI 8.
机译:通过衰减全反射傅里叶变换红外光谱法,无损地实时评估了从腐蚀的铜试样上分离出的细菌在蒸发到锗内部反射元件上的铜薄膜上的相互作用。膜在流动或静态无菌培养基的存在下是稳定的。当暴露于细菌CCI 8并在其中定殖时,铜薄膜会腐蚀。在静态条件下腐蚀增强。与铜薄膜的腐蚀相伴的是,铜-生物膜界面处多糖材料的浓度增加。另一细菌(CCI 11)不会腐蚀铜薄膜,并且该细菌在铜表面上的形成可防止CCI 8腐蚀薄膜。

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