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Mechanical Properties of Protective Coatings against Marine Fouling: A Review

机译:海洋污染防护涂料的力学性能:综述

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摘要

The accumulation of marine organisms on ship hulls, such as microorganisms, barnacles, and seaweeds, represents a global problem for maritime industries, with both economic and environmental costs. The use of biocide-containing paints poses a serious threat to marine ecosystems, affecting both target and non-target organisms driving science and technology towards non-biocidal solutions based on physico-chemical and materials properties of coatings. The review reports recent development of hydrophobic protective coatings in terms of mechanical properties, correlated with the wet ability features. The attention is focused mainly on coatings based on siloxane and epoxy resin due to the wide application fields of such systems in the marine industry. Polyurethane and other systems have been considered as well. These coatings for anti-fouling applications needs to be both long-term mechanically stable, perfectly adherent with the metallic/composite substrate, and capable to detach/destroy the fouling organism. Prospects should focus on developing even “greener” antifouling coatings solutions. These coatings should also be readily addressable to industrial scale-up for large-scale product distribution, possibly at a reasonable cost.
机译:海洋船体的海洋生物的积累,如微生物,藤壶和海藻,代表了海洋工业的全球问题,经济和环境成本。使用含杀生物剂的涂料对海洋生态系统构成严重威胁,影响了基于涂层物理化学和材料特性的非生物灭菌解决方案的目标和非靶毒性促进科学和技术。审查报告了在机械性能方面最近开发了疏水性保护涂层,与湿式能力特征相关。由于在海洋工业中这种系统的宽采地,主要关注基于硅氧烷和环氧树脂的涂料。也考虑了聚氨酯和其他系统。这些用于防污应用的涂层需要长期机械稳定,完全粘附金属/复合基材,并能够拆除/破坏污垢的生物体。前景应专注于开发甚至“绿色”防污涂料解决方案。这些涂料还应容易地寻求用于大规模产品分布的工业扩展,可能以合理的成本。

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