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Occurrence And Persistence Of Antifouling Biocide Irgarol 1051 And Its Main Metabolite In The Coastal Waters Of Southern England

机译:英格兰南部沿海地区防污杀菌剂Irgarol 1051及其主要代谢物的发生和持久性

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The toxicity and persistence of antifouling booster biocides are of major concern. This study reports the occurrence of Irgarol 1051 and its degradation product Ml, in coastal waters of Southern England, during 2004-2005. The highest concentrations of Irgarol 1051 were 89 ng/ L in water and 45 ng/g dry weight in sediments, with an overall mean (n = 108) of 13 ng/L and 16 ng/g in water and sediments, respectively. As the degradation product of Irgarol 1051, Ml was less widespread, with the highest concentration of 30 ng/L in water and 14 ng/g in sediments, with an overall mean (n = 108) of 5 ng/L and 4 ng/g in water and sediments, respectively. Overall, the concentration of Irgarol 1051 and M1 decreased significantly during the sampling period and in comparison to earlier studies during 2000 to early 2004, indicating that control measures by restricting the use of Irgarol 1051 are effective in reducing its concentrations in coastal waters. The distribution of Irgarol 1051 between sediments and water was significantly related to sediment organic carbon content. In addition, significantly higher concentrations of Irgarol 1051 were detected in paint particles than in sediment. The rate of release of Irgarol 1051 from paint residues is very slow, with a half life of approximately 1 y. Two important findings are emerging, first the importance of organic rich sediments and paint residues as major sites of storage for Irgarol 1051, and secondly Irgarol 1051 may be classified as a persistent organic pollutant due to its long half life.
机译:防污增强杀菌剂的毒性和持久性是主要关注的问题。这项研究报告了在2004年至2005年期间,英格兰南部沿海水域中Irgarol 1051及其降解产物M1的发生。 Irgarol 1051在水中的最高浓度为89 ng / L,在沉积物中的干重为45 ng / g,在水和沉积物中的总平均值(n = 108)分别为13 ng / L和16 ng / g。作为Irgarol 1051的降解产物,M1不太普遍,在水中的最高浓度为30 ng / L,在沉积物中的最高浓度为14 ng / g,总平均值(n = 108)为5 ng / L和4 ng / L。 g分别在水和沉积物中。总体而言,在采样期间,与2000年至2004年初的早期研究相比,Irgarol 1051和M1的浓度显着降低,这表明通过限制使用Irgarol 1051的控制措施可有效降低沿海水域的浓度。 Irgarol 1051在沉积物和水之间的分布与沉积物的有机碳含量显着相关。此外,在涂料颗粒中检测到的Irgarol 1051浓度明显高于沉积物中。 Irgarol 1051从涂料残留物中的释放速度非常慢,半衰期约为1 y。出现了两个重要发现,首先是富含有机物的沉积物和油漆残渣作为Irgarol 1051的主要储存场所的重要性,其次,由于Irgarol 1051的半衰期较长,因此可以归类为持久性有机污染物。

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