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首页> 外文期刊>Marine pollution bulletin >Measurement of copper release rates from antifouling paint under laboratory and in situ conditions: implications for loading estimation to marine water bodies
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Measurement of copper release rates from antifouling paint under laboratory and in situ conditions: implications for loading estimation to marine water bodies

机译:在实验室和原位条件下测量防污漆中铜的释放速率:对海洋水体负荷估算的意义

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摘要

The release of biocides, such as copper (Cu), from antifouling (AF) coatings on vessel hulls represents a significant proportion of overall Cu loading in those harbors and estuaries where substantial numbers of small craft or large vessels are berthed. Copper release rates were measured on several self-polishing, tin-free coatings and an ablative Cu reference coating applied to steel panels using three measurement methods. The panels were exposed in natural seawater in San Diego Bay, and release rates were measured both in the laboratory and field over 2 years. Results with the static (20 cm x 30 cm) panels indicated that Cu release rates were initially high (25-65μg Cu cm~(-2) day~(-1)), with a large range of values between paint types. Release rates declined to substantially lower rates (8-22μg cm~(-2) day~(-1)) with reduced variability within 2 months. Release rates continued to decrease over time for approximately 6 months when relatively constant release rates were observed for most coatings. Over time, relative differences in Cu release rates measured by three exposure methods decreased, with all coatings exhibiting similar behavior toward the end of the study. Lowest overall Cu release rates were observed with the self-polishing experimental paint no. 7 in static-dynamic and in situ treatments. The highest periodic release rates were measured from panels that experienced periods of both static and dynamic exposure (8.7 ms~(-1) rotation). The lowest release rates were measured from panels that experienced static, constant depth exposure, and where release rates were evaluated in situ, using a novel diver-deployed measurement system. Results from this in situ technique suggests that it more closely reflects actual Cu release rates on vessel hulls measured with intact natural biofilms under ambient conditions than measurements using standardized laboratory release rate methods. In situ measurements made directly on the AF surface of vessels demonstrated typically lower release rates than from the panel studies, averaging 8.2μg cm~(-2) day~(-1) on pleasure craft, and 3.8μg cm~(-2) day~(-1) on Navy vessels. The data suggest that the presence of an established biofilm likely serves to moderate the release of Cu from field-exposed antifouling coatings both on panels and hull surfaces.
机译:在停泊了大量小型船只或大型船只的那些港口和河口,从船体防污(AF)涂层中释放出的杀菌剂,例如铜(Cu)占了全部Cu负载的很大一部分。使用三种测量方法,测量了几种自抛光,无锡涂层和烧蚀的铜参考涂层在钢板上的铜释放速率。这些板暴露在圣地亚哥湾的天然海水中,并在实验室和现场测量了两年的释放速率。静态(20 cm x 30 cm)面板的结果表明,Cu释放速率最初很高(25-65μgCu cm〜(-2)天〜(-1)),并且涂料类型之间的值范围很大。释放速率下降到明显更低的速率(8-22μgcm〜(-2)天〜(-1)),并且在2个月内变异性降低。当观察到大多数涂料的释放速率相对恒定时,释放速率会随时间持续下降约6个月。随着时间的流逝,通过三种暴露方法测得的铜释放速率的相对差异减小,所有涂层在研究结束时都表现出相似的行为。使用No.1的自抛光实验涂料观察到最低的总体Cu释放速率。 7在静态-动态和原位处理中。从经历了静态和动态暴露(8.7 ms〜(-1)旋转)周期的面板中测量出最高的周期性释放率。最低释放速率是从使用了静态,恒定深度暴露的面板上测量的,并且使用新型的采用多种部署的测量系统对释放速率进行了现场评估。这种原位技术的结果表明,与使用标准实验室释放速率方法进行的测量相比,它更能反映出在环境条件下用完整的天然生物膜测得的船体上实际Cu释放速率。直接在血管的AF表面上进行的原位测量显示,其释放速率通常比专门小组研究的要低,游乐船的平均释放速率为8.2μgcm〜(-2)天〜(-1),平均为3.8μgcm〜(-2)。第一天(-1)在海军舰船上。数据表明,已建立的生物膜的存在可能有助于缓和面板和船体表面上从现场暴露的防污涂料中释放的Cu。

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