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Novel steel corrosion protection by microbial extracellular polymeric substances (EPS)--biofilm-induced corrosion inhibition

机译:微生物细胞外聚合物物质(EPS) - 生物膜诱导腐蚀抑制的新型钢腐蚀保护

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Microbially influenced corrosion (MIC) of steel has gained increasing attention in recent years because the damage caused by this process is a significant cost factor for industry. Consequently, inhibition of corrosion and especially the development of corrosion protective films is an important present-day research topic. In this connection, application of microbially produced EPS for mitigating steel corrosion is an innovative idea. However, observations of "protective" biofilms on metallic surfaces have been previously reported. Their inhibiting effect is generally thought to be caused by oxygen depletion or the formation of passivating layers. In contrast to many conventional corrosion protective methods, EPS or EPS-derived agents would be a cheap and environmentally friendly solution. Extensive research activities are still required, before biofilms or cell-free EPS can be used for corrosion protection on larger scale. In this study, we are developing a novel EPS-based corrosion protection method for unalloyed and corrosion resistant steel in aqueous media, which is based upon the application of microbial metabolic products. EPS of various sulfate-reducing bacteria and other microorganisms are investigated for their inhibiting effect. The extent of such inhibition is evaluated in a model test system, in which different steels are subjected to corrosive conditions under sulfate-reducing conditions. To elucidate the protective mechanisms, comparative analyses of the chemical composition of the applied EPS are performed.
机译:近年来,钢的微生物影响腐蚀(MIC)越来越升高,因为该过程造成的损害是工业的重要成本因素。因此,抑制腐蚀,特别是腐蚀保护膜的发展是重要的本今研究主题。在这方面,微生物生产的EPS用于减轻钢腐蚀的应用是一种创新的想法。然而,先前已经报道了在金属表面上的“保护性”生物膜的观察。通常认为它们抑制效果是由氧耗尽或钝化层的形成引起的。与许多传统的腐蚀保护方法相比,EPS或EPS衍生的药剂将是一个廉价和环保的解决方案。在生物膜或无细胞EPS之前,仍需要广泛的研究活动可用于较大规模的腐蚀保护。在这项研究中,我们正在开发一种用于含水介质中未合金化和耐腐蚀钢的新型EPS腐蚀保护方法,其基于微生物代谢产物的应用。研究了各种硫酸盐还原细菌和其他微生物的EP,以抑制效果。在模型试验系统中评估这种抑制的程度,其中在硫酸盐降低条件下对不同的钢进行腐蚀性条件。为了阐明保护机制,进行应用EPS的化学成分的对比分析。

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