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Static Versus Novel Dynamic Biofouling-Testing of Fouling-Release Coatings for Marine Applications: Pros and Cons

机译:静态与新型动态生物耦合 - 用于海洋应用的污垢释放涂料:优点和缺点

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With increasing numbers of seaborn transportation of goods worldwide, the exploitation of the ocean is rising. More and more ships and marine equipment with biocide-containing antifouling coatings are in contact with the ecosystem "ocean". The development of environmentally friendly coatings preventing or allowing a management of biofouling is therefore an urgent issue. To achieve this aim, it is essential to have access to appropriate immersion testing methods to evaluate the fouling-release properties of novel coating systems under most realistic conditions. In this study, a novel dynamic biofouling-test stand was designed and constructed to simulate the movement of a ship and to provide a reproducible testing method for marine coatings. Mechanically durable and environmentally friendly poly-thiourethane (PTU)/tetrapodal zinc oxide (t-ZnO) microparticle composite as well as reference materials such as AlMg3 alloys and pure polydimethylsiloxane (PDMS) were immersed in the Baltic Sea under static and dynamic conditions for 22 weeks. Strong differences in the degree of biofouling subjected to those conditions were found.
机译:随着全球商品数量的越来越多,海洋的开采正在上升。越来越多的船舶和船用设备与含生物剂的防污涂料与生态系统“海洋”接触。因此,在环境友好的涂料的发展,因此是一种迫切的问题。为实现这一目标,必须访问适当的浸没测试方法,以评估新型涂层系统的污垢释放特性在最现实的条件下。在这项研究中,设计并构造了一种新型动态生物磁性测试架以模拟船舶的运动并为船用涂层提供可再现的测试方法。机械耐用和环保的聚 - 硫醚(PTU)/四曲面氧化锌(T-ZnO)微粒复合材料以及参考材料,如Almg3合金和纯聚二甲基硅氧烷(PDMS)在静态和动态条件下浸入22个周。发现了对这些病症进行的生物污染程度的强烈差异。

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