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Accumulation of organochlorines and brominated flame retardants in estuarine and marine food chains: Field measurements and model calculations

机译:河口和海洋食物链中有机氯和溴化阻燃剂的积累:实地测量和模型计算

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Food chain accumulation of organochlorines and brominated flame retardants in estuarine and marine environments is compared to model estimations and fresh water field data. The food chain consists of herbivores, detritivores and primary and secondary carnivores i.e. fish, fish-eating birds and marine mammals. Accumulation of polychlorinated biphenyls is predicted well by OMEGA for herbi-detritivores and primary and secondary carnivorous fish. Ratios are similar to those found for fresh water species. Accumulation ratios for fish-eating birds and mammals are overestimated by the model, which is attributed partly to biotransformation of meta-para unsubstituted congeners. Additionally, birds may feed in other less polluted areas. For brominated diphenylethers (BDE) accumulation patterns are highly species and congener specific. Accumulation depends on both K_(OW) and metabolization capacities. BDE47 is the predominant congener in lower trophic levels. For marine birds and mammals accumulation ratios of BDE99 and 100 are similar to or higher than ratios of persistent PCBs.
机译:将河口和海洋环境中有机氯和溴化阻燃剂在食物链中的积累与模型估计和淡水田间数据进行比较。食物链包括食草动物,有害生物和初级和次级食肉动物,即鱼类,食鱼鸟类和海洋哺乳动物。 OMEGA很好地预测了除草剂和食肉,食肉鱼类的多氯联苯会积累。该比率与淡水物种的比率相似。该模型高估了食鱼鸟类和哺乳动物的蓄积率,这部分归因于间位对位未取代同类物的生物转化。此外,鸟类可能在其他污染较少的地区觅食。对于溴化二苯醚(BDE),积累模式是高度物种和特定同类物。积累取决于K_(OW)和代谢能力。 BDE47是较低营养级别的主要同源物。对于海洋鸟类和哺乳动物,BDE99和100的累积比率与持久性PCB的比率相似或更高。

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