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Sediment and Biota Trace Element Distribution in StreamsDisturbed by Upland Industrial Activity

机译:河流中沉积物和生物区系微量元素的分布 r n受到高地工业活动的干扰

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Extensive industrial areas in headwater stream watersheds can severely impact the physical condition of streams and introduce contaminants. We compared 3 streams that received stormwater runoff and industrial effluents from industrial complexes to 2 reference streams. Reference streams provide a benchmark of comparison of geomorphic form and stability in coastal plain, sandy-bottomed streams as well as concentrations of trace elements in sediment and biota in the absence of industrial disturbance. We used crayfish (Cambarus latimanus, Procambarus raneyi, Procambarus acutus) and crane fly larvae (Tipula) as biomonitors of 15 trace elements entering aquatic food webs. Streams with industrial areas were more scoured, deeply incised, and less stable. Sediment organic matter content broadly correlated to trace element accumulation, but fine sediments and organic matter were scoured from the bottoms of disturbed streams. Trace element concentrations were higher in depositional zones than runs within all streams. Despite contaminant sources in the headwaters, trace element concentrations were generally not elevated in sediments of the eroded streams. However, element concentrations were frequently elevated in biota from these streams with taxonomic differences in accumulation amplified. In eroded, sand-bottomed coastal plain streams with unstable sediments, single snapshots of sediment trace element concentrations did not characterize well bioavailable trace elements. Biota that integrated exposures over time and space within their home ranges better detected bioavailable contaminants than sediment. Environ Toxicol Chem 2019;38:115-131. (c) 2018 SETAC
机译:上游水源流域的广泛工业区会严重影响河流的物理状况并引入污染物。我们将接收来自工业园区的雨水径流和工业废水的3条流与2条参考流进行了比较。参考流提供了在没有工业干扰的情况下,比较沿海平原,沙质流,地貌形态和稳定性以及沉积物和生物区中微量元素浓度的基准。我们使用小龙虾(Cambarus latimanus,Procambarus raneyi,Procambarus acutus)和鹤蝇幼虫(Tipula)作为进入水生食物网的15种微量元素的生物监测器。具有工业区域的溪流更易冲刷,切割得较深且不稳定。沉积物有机质含量与微量元素的积累广泛相关,但细小沉积物和有机质却从受干扰流的底部冲刷出来。沉积区中的痕量元素浓度高于所有流中的痕量元素浓度。尽管上游源头有污染物,但侵蚀流沉积物中的微量元素浓度通常并未升高。但是,这些流中生物区系中的元素浓度经常升高,积累的分类学差异也随之增加。在具有不稳定沉积物的被侵蚀的,底部为沙子的沿海平原溪流中,沉积物痕量元素浓度的单次快照无法表征良好的生物利用度痕量元素。在其家中范围内随时间和空间进行曝光的生物群比沉积物更好地检测到了可利用的生物污染物。 Environ Toxicol Chem 2019; 38:115-131。 (c)2018年SETAC

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