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Latest research progress of marine microbiological corrosion and bio-fouling and new approaches of marine anti-corrosion and anti-fouling

机译:海洋微生物腐蚀与生物积垢的最新研究进展及海洋防腐与积垢的新方法

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摘要

Marine resources and industry have become one of the most important pillars in economic development all over the world. However, corrosion of materials is always the most serious problem to the infrastructure and equipment served in marine environment. Researchers have found that microbiologically influenced corrosion (MIC) and marine bio-fouling are two main mechanisms of marine corrosions due to the complicated marine environment and marine organisms. This article summarized the latest research progress about these two mechanisms and indicated that both MIC and marine bio-fouling are closely related to the biofilms on material surfaces formed by the marine microorganisms and their metabolites. As a result, to prevent the occurrence of MIC and bio-fouling, it is important to control the microorganisms in biofilms or prevent the adhesion and formation of biofilms. The traditional method of using chemical bactericide or antifoulant faces the problems of pollution and microorganism resistance. This article introduced four research approaches about the new tendency of applying new materials and technologies to cooperate with traditional chemicals to achieve better and longer effects with lower environment pollution through synergistic actions. Finally, some future research tendencies were proposed for whole marine anti-corrosion and anti-fouling areas.
机译:海洋资源和工业已经成为全世界经济发展的最重要支柱之一。但是,材料腐蚀始终是海洋环境中服务的基础设施和设备的最严重问题。研究人员发现,由于复杂的海洋环境和海洋生物,微生物影响的腐蚀(MIC)和海洋生物结垢是造成海洋腐蚀的两个主要机制。本文总结了这两种机制的最新研究进展,并指出MIC和海洋生物污染与海洋微生物及其代谢产物形成的物质表面上的生物膜密切相关。结果,为了防止MIC和生物结垢的发生,重要的是控制生物膜中的微生物或防止生物膜的粘附和形成。使用化学杀菌剂或防污剂的传统方法面临着污染和抗微生物性的问题。本文介绍了四种研究方法,探讨了通过协同作用将新材料和新技术与传统化学品合作以达到更好,更长的效果,降低环境污染的新趋势。最后,对整个海洋防腐防污领域提出了一些未来的研究趋势。

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