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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Nano and traditional copper and zinc antifouling coatings: metal release and impact on marine sessile invertebrate communities
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Nano and traditional copper and zinc antifouling coatings: metal release and impact on marine sessile invertebrate communities

机译:纳米和传统的铜和锌防污涂料:金属释放和对海洋无脊椎动物群落的影响

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摘要

Artificial surfaces in coastal waters and offshore oceans, including boat hulls, docks, and offshore structures, are invariably colonized, or fouled, by a host of sessile species known collectively as fouling communities. Fouling has great economic impacts on shipping and other marine industries and plays an important role in the spread of marine invasive species across the globe. The main strategy to prevent fouling of artificial surfaces is application of antifouling coatings containing varying concentrations and mixtures of biocides. Presently, copper and zinc are popular antifouling biocides, and the latter is gaining in usage due to the known toxic characteristics of copper in the marine environment and consequent regulation and consumer opinion. Nanomaterials, including Cu and ZnO nanoparticles, have been explored as a way to efficiently deliver biocides from coating matrices. Here, we examine the efficacy and biocide release characteristics of several copper- and zinc-based antifouling coatings, including formulations containing traditional micron-sized Cu and ZnO particles and two containing copper and ZnO nanoparticles, respectively. Most of the antifouling coatings tested significantly reduced the abundance and biodiversity of the fouling community in the three study locations across California. Invasive species were suppressed by most coatings at similar levels to natives, suggesting that in general, antifouling coatings do not favor invasive species. We found that zinc-based antifouling coatings were similar and in some cases better performing than copper, despite the generally lower toxicity of zinc to aquatic organisms compared with copper. The performance of zinc-based coatings, moreover, was not directly related to the amount of zinc released into the water or their zinc content. Nano-based coatings did not offer any clear advantages over non-nano coatings, either in the degree of Zn leaching or fouling suppression. Coating matrix properties clearly are an important factor affecting the efficacy and biocide leaching rate of antifouling coatings.
机译:沿海水域和海上海洋的人造表面,包括船船体,码头和海上结构,这些物种总是殖民,或犯规,或犯规,或者是一系列肮脏的种类,作为结垢社区。 Fouling对航运和其他海洋产业产生了巨大的经济影响,并在全球海洋侵入性物种的传播中发挥着重要作用。防止人造表面污染的主要策略是应用含有不同浓度和杀生物剂混合物的防污涂层。目前,铜和锌是流行的防污生物剂,后者由于海洋环境中铜的已知有毒特征以及随之的调节和消费者观点而获得使用。已经探索了纳米材料,包括Cu和ZnO纳米粒子,作为从涂层基质有效地递送杀菌剂的方法。在这里,我们研究几种基于铜和锌的防污涂层的疗效和杀菌剂释放特性,包括分别含有传统的微米尺寸Cu和ZnO颗粒的制剂和含有铜和ZnO纳米颗粒的配方。大多数防污涂料测试明显减少了加利福尼亚州三个研究地点的结垢社区的丰富和生物多样性。对当地物质的大多数涂层抑制了侵入性物种,这表明通常,防污涂层不赞成侵入物种。我们发现,尽管锌与铜相比,锌的防污涂层类似,在某些情况下比铜更好地表现比铜更低。此外,锌基涂层的性能与释放到水或其锌含量的锌量并不直接相关。基于纳米涂层的涂层在非纳米涂层上没有提供任何明显的优点,无论是Zn浸出还是污垢抑制。涂层基质特性显然是影响防污涂层疗效和杀生物剂浸出速率的重要因素。

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