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首页> 外文期刊>Environmental Science: Nano >Hazard of novel anti-fouling nanomaterials and biocides DCOIT and silver to marine organisms
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Hazard of novel anti-fouling nanomaterials and biocides DCOIT and silver to marine organisms

机译:危害新型防污纳米材料和杀生物剂DCOIT和银对海洋生物的危害

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摘要

Biocide-based coatings have been applied for several years to tackle marine biofouling. Recently, engineered nanomaterials, such as silica mesoporous nanocapsules (SiNCs), were used to encapsulate DCOIT, an anti-fouling booster biocide, and Ag, a broad-spectrum bactericidal agent, in order to control their release with time. This study aims to assess the environmental hazard of three novel anti-fouling nanomaterials (SiNC-DCOIT, SiNC-Ag and SiNC-DCOIT-Ag) and their free counterparts (DCOIT, Ag and SiNCs) to marine ecosystems. In order to accomplish this goal, marine toxicity data (L/E/IC(50)or NOEC) were compiled to derive PNEC values for each compound based on statistical and deterministic approaches. The first approach relies on the hazardous concentration for 5% of the species (HC(5)using species sensitivity distribution curves) and the second relies on the lowest L/E/IC(50)or NOEC value, considering the appropriate assessment factors. In both approaches, PNEC values were lower for the encapsulated biocides than for their free forms. Thus, biocide encapsulation appears to be a promising solution to develop a new generation of efficient anti-fouling additives for maritime coatings with lower environmental hazard than the current state-of-the-art biocides.
机译:基于杀生物剂的涂料已经应用了几年来解决海洋生物污染。最近,用于将DCOIT,抗污染增强剂杀菌剂和Ag,一种广谱杀菌剂,诸如二氧化硅中孔纳米胶囊(SINC)的工程化纳米材料,以控制其释放。本研究旨在评估三种新型防污纳米材料(SINC-DCoit,Sinc-AG和SINC-DCOIT-AG)的环境危害,以及对海洋生态系统的免费对方(DCoit,AG和SINC)。为了实现这一目标,编制海洋毒性数据(L / E / IC(50)或NOEC)以基于统计和确定性方法导出每个化合物的PNEC值。第一种方法依赖于使用物种灵敏度分布曲线的5%(HC(5)的危险浓度),并且第二种依赖于考虑适当的评估因子的最低L / E / IC(50)或NOEC值。在两种方法中,封装的杀生物剂的PNEC值低于其自由形式。因此,杀生物剂封装似乎是开发新一代高效的抗结垢添加剂,用于对环境危害的新产生高效的防污添加剂,其环境危害低于目前最先进的杀生物剂。

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