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Assessment of metal contamination in the biota of four rivers experiencing varying degrees of human impact

机译:评估四条受到人类不同程度影响的河流生物区系中的金属污染

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Urbanization, agriculture, and other land transformations can affect water quality, decrease species biodiversity, and increase metal and nutrient concentrations in aquatic systems. Metal pollution, in particular, is a reported consequence of elevated anthropogenic inputs, especially from urbanized areas. The objectives of this study were to quantify metal (Cu, Al, Cd, Ni, and Pb) concentrations in the waters and biota of four streams in South Georgia, USA, and relate metal concentrations to land use and abiotic and biotic stream processes. Additionally, macrophytes, invertebrates, and fish were identified to assess biodiversity at each site. Metal concentrations in the three trophic levels differed among sites and species, correlating to differences in land use surrounding the rivers. The highest metal concentrations (except Al) were found in the streams most impacted by urbanization and development. Al concentrations were highest in streams surrounded by land dominated by forested areas. Metal content in macrophytes reflected metal concentrations in the water and was at least three orders of magnitude higher than any other trophic level. Despite metal concentration differences, all four streams contained similar water quality and were healthy based on macroinvertebrate community structure. This study provides insight into the impact of urbanization and the fate and effects of metals in river ecosystems with varying degrees of anthropogenic impact.
机译:城市化,农业和其他土地改造会影响水质,减少物种生物多样性,并增加水生系统中的金属和养分含量。据报道,特别是金属污染是人为投入增加的结果,特别是来自城市化地区的人为投入。这项研究的目的是量化美国乔治亚州南部四个溪流的水域和生物区系中金属(铜,铝,镉,镍和铅)的浓度,并将金属浓度与土地利用以及非生物和生物流过程联系起来。此外,还鉴定了大型植物,无脊椎动物和鱼类,以评估每个地点的生物多样性。三种营养级的金属浓度在地点和物种之间有所不同,这与河流周围土地利用的差异有关。在受城市化和发展影响最大的河流中发现了最高的金属浓度(铝除外)。在林地为主的土地所包围的河流中,铝的浓度最高。大型植物中的金属含量反映了水中的金属浓度,并且比任何其他营养级别高至少三个数量级。尽管金属浓度存在差异,但所有四股水流的水质均相似,并且根据大型无脊椎动物群落结构健康。这项研究提供了对城市化的影响以及金属在不同程度的人为影响下在河流生态系统中的命运和影响的见解。

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