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A new approach to testing potential leaching toxicity of fouling release coatings (FRCs)

机译:测试结垢释放涂层(FRC)潜在浸出毒性的新方法

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Fouling release coatings (FRCs) are today the main environment-friendly alternative to traditional self-polishing coatings, that continuously release biocides and/or heavy metals into water. FRCs are available on the market as environmentally friendly AF paints and most of them do not contain bioactive agents, however no complete and reliable assessment of their environmental impact has yet been carried out. Only few literature data proving their AF efficacy combined with a demonstrated lack of toxicological effects are available. Ecotoxicological bioassays are commonly used to predict the potential environmental impact of traditional AF paints. Standardized methodologies to obtain leaching products from biocide-based paints are available, while few studies propose experimental methods to assess the potential effects of biocide-free FRCs leachates on non-target organisms. The aim of this work is to propose an experimental protocol to obtain leaching products from biocide-free FRCs in order to evaluate the potential release of substances having toxic effects, by means of an ecotoxicological bioassay. Two ecotoxicological end-points with different sensitivity levels were considered (multi-end-point approach). Five silicone-based commercial coatings were used: their leaching products were collected after different immersion times following the developed experimental method and then two ecotoxicological end-points were evaluated on II stage nauplii of the crustacean Amphibalanus amphitrite as model organism. Moreover, chemical analyses were performed on leachates collected after each immersion time, focusing on the presence of metals in leaching products. From the results obtained from the bioassay, even if not indicative of the real environmental impact of FRCs, a release of toxic substances was observed from tested coatings during early immersion stages, likely to affect the exposed model organism. The potential leaching toxicity of the five tested products was compared. No clear correspondence could be identified between the concentrations of metals detected in leachates and the obtained ecotoxicological data, thus suggesting that other active components might be released by FRCs responsible for the toxic effects pointed out on A. atnphitrite larvae.
机译:结垢释放涂料(FRC)如今已成为传统的自抛光涂料的主要环保替代品,传统的自抛光涂料可将杀菌剂和/或重金属连续释放到水中。市场上有FRCs用作环保AF涂料,其中大多数不含生物活性剂,但是尚未对其环境影响进行完整和可靠的评估。仅有很少的文献资料证明其房颤疗效以及已证明缺乏毒理学作用。生态毒理生物测定法通常用于预测传统AF涂料的潜在环境影响。可以使用从杀菌剂基涂料中获得浸出产品的标准化方法,而很少有研究提出实验方法来评估不含杀菌剂的FRCs渗滤液对非目标生物的潜在影响。这项工作的目的是提出一种实验方案,以通过无毒杀生物的FRC获得浸出产物,以通过生态毒理学生物测定法评估具有毒性作用的物质的潜在释放。考虑了两个具有不同敏感性水平的生态毒理学终点(多终点法)。使用了五种基于有机硅的商业涂料:按照发达的实验方法,在不同的浸没时间后收集其浸出产物,然后以甲壳纲两栖双闪石作为模型生物的II期无节幼体评估了两个生态毒理学终点。此外,对每个浸没时间后收集的浸出液进行化学分析,重点是浸出产品中金属的存在。根据从生物测定获得的结果,即使不能指示FRC的实际环境影响,在浸入早期阶段,从被测涂层中也观察到有毒物质的释放,这很可能会影响暴露的模型生物。比较了五种测试产品的潜在浸出毒性。在渗滤液中检测到的金属浓度与所获得的生态毒理学数据之间没有明确的对应关系,因此表明,FRC可能释放其他活性成分,这些活性成分负责对无毒蝇幼虫指出的毒性作用。

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