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在欧盟水域使用防污漆对游乐船只的环境风险评估。

Environmental risk assessment of using antifouling paints on pleasure crafts in European Union waters.

机构信息

Department of Mechanics and Maritime Sciences, Chalmers University of Technology, SE 412 96, Gothenburg, Sweden.

Department of Mechanics and Maritime Sciences, Chalmers University of Technology, SE 412 96, Gothenburg, Sweden.

出版信息

J Environ Manage. 2021 Mar 1;281:111846. doi: 10.1016/j.jenvman.2020.111846. Epub 2021 Jan 2.

Abstract

To ensure sustainable use of antifouling paints, the European Union have developed a new environmental risk assessment tool, which a product must pass prior to its placement on the market. In this new tool, environmental concentrations are predicted based on estimated release rates of biocides to the aquatic environment and risk characterization ratios are calculated in regional spreadsheets. There are currently two methods in use to predict release rates of biocides; a calculation method and a laboratory method. These methods have been believed to overestimate environmental release of biocides and therefore fixed correction factors to reduce the release rate can be applied. An alternative method, known as the XRF method, has recently been developed and used to derive field release rates from antifouling paints. The aim of this study was to review the new environmental risk assessment tool and assess how the choice of release rate method and application of correction factors impact the approval of antifouling paint products. Eight coatings were environmentally risk assessed for usage in four European marine regions; Baltic, Baltic Transition, Atlantic and Mediterranean; by applying release rates of copper and zinc determined with the different methods. The results showed none of the coatings to pass the environmental risk assessment in the Baltic, Baltic Transition and the Mediterranean if field release rates were used. In contrast, most of the coatings passed if the correction factors were applied on the release rates obtained with the calculation or laboratory method. The results demonstrate the importance of release rate method choice on the outcome of antifouling product approval in EU. To reduce the impact of antifouling paints on the marine environment it is recommended that no correction factors should be allowed in the environmental risk assessment or preferably that site-specific field release rates are used. If the regulation in the European Union (and elsewhere) continues to allow correction factors, the pressure of biocides to the environment from leisure boating will result in degradation of marine ecosystems.

摘要

为确保防污漆的可持续使用,欧盟开发了一种新的环境风险评估工具,该工具要求产品在投放市场前必须通过。在这个新工具中,根据估计的杀生剂向水生环境的释放率来预测环境浓度,并在区域电子表格中计算风险特征比值。目前有两种方法可用于预测杀生剂的释放率:计算方法和实验室方法。这些方法被认为高估了杀生剂的环境释放,因此可以应用固定的修正系数来降低释放率。最近开发并用于从防污漆中得出现场释放率的替代方法称为 XRF 方法。本研究的目的是审查新的环境风险评估工具,并评估释放率方法的选择和修正系数的应用如何影响防污漆产品的批准。八种涂料在四个欧洲海洋区域(波罗的海、波罗的海过渡区、大西洋和地中海)的环境风险评估中,应用了通过不同方法确定的铜和锌的释放率。结果表明,如果使用现场释放率,则没有一种涂料能够通过波罗的海、波罗的海过渡区和地中海的环境风险评估。相比之下,如果在计算或实验室方法获得的释放率上应用修正系数,则大多数涂料都可以通过。结果表明,释放率方法的选择对欧盟防污产品批准的结果具有重要意义。为了减少防污漆对海洋环境的影响,建议在环境风险评估中不允许使用修正系数,或者最好使用特定地点的现场释放率。如果欧盟(和其他地方)的法规继续允许修正系数,那么休闲船对环境的生物杀灭剂压力将导致海洋生态系统的退化。

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