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Biofilms Formation and Microbiologically Influenced Corrosion (MIC) In Different Materials

机译:生物膜形成和微生物学影响不同材料的腐蚀(MIC)

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Background: Metal surface immersed in natural or industrial waters undergo a sequence of processes in time and space that lead to the formation of biological and inorganic (scaling) deposit adhesion of different microorganisms (bacteria, microalgae, fungi) on the metal surface through extracellular polymeric substances, causing microbiologically influenced corrosion. The biofilm formation and microbiologically influenced corrosion impact on economic interests and after inorganic corrosion they are the most important problems affecting different industries. The eradication of biofilm in the industry is difficult and costly. Technological importance in the thermoelectric industry by biofilm and biofouling formation lies in energy losses in heat exchanger systems. In the oil industry, problems derived from the presence of biofilms as filter plugging, corrosion in structures storage and distribution of fuel are presented. The aim of this work is to show the different industry cases of microbiologically influenced corrosion: jet aircraft fuel storage tanks and distribution plant, steel plant, thermoelectric industry. The evaluation of microbiologically influenced corrosion and the biofilm formation are investigated. Methods: Microbial counts were performed by conventional techniques. The formation of the biofilm and the attack on the metal surface were studied through scanning electron microscopic techniques. Results: Different results were obtained for each of the industrial environments studied. Conclusion: Strategies to evaluate corrosion problems systems are proposed through microbiological and physical-chemical studies.
机译:背景:在天然或工业水域中浸入的金属表面在时间和空间中进行一系列过程,导致通过细胞外聚合物在金属表面上形成生物和无机(缩放)沉积的不同微生物(细菌,微藻,真菌)的沉积粘附物质,引起微生物学过腐蚀。生物膜形成和微生物学影响对经济利益的腐蚀影响以及无机腐蚀后,它们是影响不同行业的最重要的问题。在行业中根除生物膜是困难和昂贵的。通过生物膜和生物污染形成技术重要性在换热器系统中的能量损失中的能力。在石油工业中,介绍了生物膜存在作为过滤器堵塞的问题,呈现结构储存和燃料分布的腐蚀。这项工作的目的是展示不同行业案例的微生物学影响腐蚀:喷气式飞机燃料储罐和配电厂,钢铁厂,热电工业。研究了微生物学影响腐蚀和生物膜形成的评价。方法:通过常规技术进行微生物计数。通过扫描电子显微技术研究生物膜的形成和对金属表面的攻击。结果:为研究的每个工业环境获得了不同的结果。结论:通过微生物和物理化学研究提出评估腐蚀问题系统的策略。

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