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Adhesion of acorn barnacles on surface-active borate glasses

机译:表面活性硼酸盐玻璃上的橡子藤壶粘附

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摘要

Concerns about the bioaccumulation of toxic antifouling compounds have necessitated the search for alternative strategies to combat marine biofouling. Because many biologically essential minerals have deleterious effects on organisms at high concentration, one approach to preventing the settlement of marine foulers is increasing the local concentration of ions that are naturally present in seawater. Here, we used surface-active borate glasses as a platform to directly deliver ions (Na+, Mg2+ and BO43-) to the adhesive interface under acorn barnacles (Amphibalanus (=Balanus) amphitrite). Additionally, surface-active glasses formed reaction layers at the glass- water interface, presenting another challenge to fouling organisms. Proteomics analysis showed that cement deposited on the gelatinous reaction layers is more soluble than cement deposited on insoluble glasses, indicating the reaction layer and/or released ions disrupted adhesion processes. Laboratory experiments showed that the majority (greater than 79%) of adult barnacles re-attached to silica-five borate glasses for 14 days could be released and, more importantly, barnacle larvae did not settle on the glasses. The formation of microbial biofilms in field tests diminished the performance of the materials. While periodic water jetting (120 psi) did not prevent the formation of biofilms, weekly cleaning did dramatically reduce macrofouling on magnesium aluminoborate glass to levels below a commercial foul-release coating.
机译:关于有毒防污化合物的生物累积的担忧需要寻求打击海洋生物污染的替代策略。由于许多生物学基本矿物质对高浓度的有害影响对生物体产生有害影响,因此防止海洋污垢沉降的一种方法正在增加海水中天然存在的离子的局部浓度。在此,我们使用表面活性硼酸盐玻璃作为直接将离子(Na +,Mg2 +和Bo43-)直接递送到橡子胚胎(Amphibalanus(= Balanus)amphitrite)的粘合剂界面的平台。另外,表面活性眼镜在玻璃水界面处形成反应层,对结垢生物呈现另一个挑战。蛋白质组学分析表明,沉积在凝胶反应层上的水泥比沉积在不溶的眼镜上的水泥,表明反应层和/或释放离子破坏粘附过程。实验室实验表明,大多数(大于79%)成年雄蕊重新附着于二氧化硅 - 五硼酸盐14天,更重要的是,晶粒幼虫没有沉淀在眼镜上。在现场测试中形成微生物生物膜的形成减少了材料的性能。虽然周期性喷射(120psi)没有防止生物膜的形成,但每周清洁均可在铝铝玻璃镁镁玻璃上急剧减少到商业污水释放涂层以下的水平。

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