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Copper emissions from antifouling paint on recreational vessels

机译:休闲船上防污漆中的铜排放

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Trace metals, especially copper, are commonly occurring contaminants in harbors and marinas. One source of copper to these environs is copper-based antifouling coatings used on vessel hulls. The objective of this study was to measure dissolved copper contributions from recreational vessel antifouling coatings for both passive leaching and hull cleaning activities. To accomplish this goal, three coating formulations, including hard vinyl, modified epoxy and a biocide free bottom paint were applied on fiberglass panels and placed in a harbor environment. In situ measurements of passive leaching were made using a recirculating dome system. Monthly average flux rates of dissolved copper for the hard vinyl and modified epoxy coatings were 3.7 and 4.3 μg/cm~2/day, respectively, while flux rates for the biocide free coating was 0.2 μg/cm~2/day. The highest passive flux rates were measured initially after cleaning activities, rapidly decreasing to a baseline rate within three days, regardless of copper-based coating formulation. Hull cleaning activities generated between 8.6 and 3.8 μg dissolved copper/cm~2/event for the modified epoxy and hard vinyl coatings, respectively. Aggressive cleaning using an abrasive product doubled the copper emissions from the modified epoxy coating, but produced virtually no change in the much tougher hard vinyl coating. When compared on a mass basis, roughly 95% of copper is emitted during passive leaching compared to hull cleaning activities over a monthly time period for a typical 9.1 m power boat.
机译:痕量金属,尤其是铜,是港口和码头中常见的污染物。这些环境中的一种铜来源是船体上使用的铜基防污涂料。这项研究的目的是测量用于消融和船体清洁的休闲船防污涂料中溶解铜的含量。为了实现这一目标,将三种涂料配方(包括硬质乙烯基树脂,改性环氧树脂和不含生物杀伤剂的底漆)涂在玻璃纤维板上,并置于港口环境中。使用循环圆顶系统对被动浸出进行原位测量。硬质乙烯基涂料和改性环氧涂料的溶解铜的月平均通量速率分别为3.7和4.3μg/ cm〜2 /天,而无杀菌剂涂料的通量速率为0.2μg/ cm〜2 /天。最初的最高被动通量率是在清洁活动后开始测量的,无论基于铜的涂料配方如何,在三天内迅速降至基线速率。改性环氧涂料和硬质乙烯基涂料的船体清洁活性分别为8.6和3.8μg溶解铜/ cm〜2 /事件。使用磨料磨具进行的积极清洗使改性环氧树脂涂层的铜排放量增加了一倍,但实际上坚硬的乙烯基涂层几乎没有变化。以质量为基准进行比较时,相比于典型9.1 m动力船每月的船体清洁活动,被动浸出过程中大约释放了95%的铜。

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