Department of Mechanics and Maritime Sciences, Chalmers University of Technology, SE 412 96, Gothenburg, Sweden.
IVL Swedish Environmental Research Institute, Kristineberg 566, 45178 Fiskebäckskil, Sweden.
Mar Pollut Bull. 2022 Nov;184:114102. doi: 10.1016/j.marpolbul.2022.114102. Epub 2022 Sep 13.
To combat unwanted fouling on immersed hulls, biocidal antifouling coatings are commonly applied to vessels trafficking the Baltic Sea. Here, the efficacy, environmental sustainability and market barriers of silicone foul-release coatings (FRCs) was assessed for this region to evaluate their viability as replacements for biocidal coatings. Coated panels were exposed statically over a 1 year period at three locations in the Baltic Sea region to assess the long-term performance of a biocide-free FRC and two copper coatings. The FRC was found to perform equally well or significantly better than the copper coatings. Even though most silicone FRCs on the market are biocide-free, a review of the literature regarding toxic effects and the identity and environmental fate of leachables shows that they may not be completely environmentally benign, simply for the lack of biocides. Nonetheless, FRCs are substantially less toxic compared to biocidal antifouling coatings and their use should be promoted.
为了防止船体被不需要的生物附着,通常会在波罗的海航行的船舶上应用杀生型防污涂料。本研究评估了硅基防污释放涂料(FRC)在该地区的功效、环境可持续性和市场障碍,以评估其作为杀生型涂料替代品的可行性。将涂覆的面板在波罗的海地区的三个地点进行为期 1 年的静态暴露,以评估无杀菌剂 FRC 和两种铜涂料的长期性能。结果发现,FRC 的性能与铜涂料相当或显著更好。尽管市场上大多数硅基 FRC 是无杀菌剂的,但对文献中关于毒性影响以及浸出物的身份和环境归宿的综述表明,它们可能并不完全是环境友好的,仅仅是因为缺乏杀生剂。尽管如此,FRC 的毒性与杀生型防污涂料相比要小得多,应该推广其使用。