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Sediment challenge to promising ultra-low fouling hydrophilic surfaces in the marine environment

机译:沉积物挑战对海洋环境中有前途的超低污染亲水性表面

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摘要

Hydrophilic coatings exhibit ultra-low fouling properties in numerous laboratory experiments. In stark contrast, the antifouling effect of such coatings in vitro failed when performing field tests in the marine environment. The fouling release performance of nonionic and zwitterionic hydrophilic polymers was substantially reduced compared to the controlled laboratory environment. Microscopy and spectroscopy revealed that a large proportion of the accumulated material in field tests contains inorganic compounds and diatomaceous soil. Diatoms adhered to the accumulated material on the coating, but not to the pristine polymer. Simulating field tests in the laboratory using sediment samples collected from the test sites showed that incorporated sand and diatomaceous earth impairs the fouling release characteristics of the coatings. When exposed to marine sediment from multiple locations, particulate matter accumulated on these coatings and served as attachment points for diatom adhesion and enhanced fouling. Future developments of hydrophilic coatings should consider accumulated sediment and its potential impact on the antifouling performance.
机译:亲水性涂层在许多实验室实验中表现出超低污垢性能。在鲜明对比中,在在海洋环境中进行现场测试时,这种涂层的防污效果失效。与受控实验室环境相比,非离子和两性离子亲水聚合物的污垢释放性能显着降低。显微镜和光谱表明,田间试验中的大部分累积材料含有无机化合物和硅藻土。硅藻粘附在涂层上的累积材料上,但不是原始聚合物。使用从测试部位收集的沉积物样本模拟实验室的现场测试显示,掺入的沙子和硅藻土损害了涂层的污垢释放特性。当从多个位置暴露于海洋沉积物时,颗粒物质积聚在这些涂层上,并用作硅藻粘附和增强的污垢附着点。亲水涂层的未来发展应考虑积累的沉积物及其对防污性能的潜在影响。

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