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Ecological Effects of Metals in Streams on a Defense Materials Processing Site in South Carolina, USA

机译:溪流中的金属对美国南卡罗来纳州国防材料加工场的生态影响

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摘要

The Savannah River Site (SRS) is a 780 km~2 U.S. Department of Energy facility near Aiken, South Carolina, established in 1950 to produce nuclear materials. SRS streams are "integrators" that potentially receive water transportable contaminants from all sources within their drainage basins, necessitating a watershed approach to organize contaminant distribution data and characterize the effects of multiple contaminants on aquatic organisms. This study used several lines-of-evidence to assess the ecological effects of metals in SRS streams, including contaminant exposure models for apex predators and bioassessments of fish and macroinvertebrate assemblages. Concentrations of metals in sediments, fish, and water were elevated in streams affected by SRS operations, but contaminant exposure models for the river otter Lontra Canadensis and belted kingfisher Ceryle alcyon indicated that tox-icological reference values were exceeded only by Hg and Al. Macroinvertebrate assemblage structure was unrelated to sediment metal concentrations. Fish assemblage data were inconclusive. This study indicated that (1) modeling studies and field bioassessments provide a complementary basis for addressing the individual and cumulative effects of contaminants, (2) habitat effects must be controlled when assessing contaminant impacts, (3) sensitivity analyses of contaminant exposure models can help to apportion sampling effort, and (4) most individual metals in SRS streams are unlikely to have significant ecological effects.
机译:萨凡纳河站点(SRS)是美国能源部在南卡罗来纳州艾肯附近的一个780 km〜2设施,成立于1950年,用于生产核材料。 SRS流是“集成器”,可以潜在地从流域内的所有来源接收水可输送的污染物,因此需要一种分水岭方法来组织污染物分布数据并表征多种污染物对水生生物的影响。这项研究使用了多种证据来评估SRS溪流中金属的生态效应,包括用于尖齿捕食者的污染物暴露模型以及鱼类和大型无脊椎动物种群的生物评估。受SRS作业影响的溪流中沉积物,鱼类和水中的金属浓度升高,但是水獭Lontra Canadensis和带状翠鸟Ceryle alcyon的污染物暴露模型表明,仅汞和铝超过了毒理学参考值。大无脊椎动物组合结构与沉积物金属浓度无关。鱼群数据尚无定论。这项研究表明,(1)建模研究和现场生物评估为解决污染物的个体和累积效应提供了补充基础;(2)在评估污染物影响时必须控制栖息地的影响;(3)污染物暴露模型的敏感性分析可以提供帮助(4)SRS流中的大多数单个金属不太可能对生态产生重大影响。

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