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Spatial distribution and human contamination quantification of trace metals and phosphorus in the sediments of Chaohu Lake, a eutrophic shallow lake, China

机译:富营养化浅水湖巢湖沉积物中微量金属和磷的空间分布和人类污染定量

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摘要

Distinguishing and quantifying anthropogenic trace metals and phosphorus accumulated in sediment is important for the protection of our aquatic ecosystems. Here, anthropogenic proportion and potential sources of trace metals and phosphorus in surface sediments of Chaohu Lake were evaluated based on the exhaustive geochem-ical data. The analysis shows that concentrations of major and trace metals, and phosphorus, displayed significant spatial diversity and almost all elements were over the pre-industrial background value, which should be related to the variations of sediment composition partially. Therefore, conservative element normalization was introduced and calculated enrichment factors (EFs) of the elements were referenced highlighting the human contamination. EFs of the major and trace metals, except Zn, Pb, and Cu, were all nearly 1.0, indicating the detrital origin. The EFs of Zn, Pb, Cu and phosphorus were 1.0-10.4, 1.0-3.8, 1.0-4.9, and 1.0-7.6, respectively, showing moderate to significant contamination. Higher EFs of Zn, Pb and Cu occurred in the mouth areas of Nanfei River and Zhegao River, and they decreased to the lake center in the northwest and northeast lake areas, respectively. We deduced that anthropogenic Zn, Pb, and Cu were mainly from urban and industrial point sources and the non-point sources of atmospheric deposition contributed little to their contamination. The EFs of phosphorus showed similar spatial degradation with that of Zn, Pb, and Cu. Moreover, higher EFs (>1) of phosphorus also occurred in other areas adjacent to the river mouths besides Nanfei River and Zhegao River. This indicated that the non-point agricultural source may also be responsible for the contamination of phosphorus in Chaohu Lake in addition to the urban sewage sources. Anthropogenic phosphorus was mainly concentrated in the speciation of NaOH-P, which had higher potential biological effects than the detrital proportion. Concentrations of Zn, Pb and Cu surpassed the threshold effect concentrations (TEC) of consensus-based sediment quality guidelines of freshwater ecosystems, especially in the contaminated northwest area of Chaohu Lake. This highlighted the contributions of anthropogenic contamination to the elevated potential biological effects of trace metals. Though there had been no obvious human contamination of Cr and Ni in Chaohu Lake, concentrations were all over the TECs, which may be due to higher background levels in the parent materials of soils and bedrocks in Chaohu Lake catchment.
机译:区分和量化沉积物中积累的人为痕量金属和磷对于保护我们的水生生态系统很重要。在此,基于详尽的地球化学数据,评估了巢湖表层沉积物中人为比例和痕量金属和磷的潜在来源。分析表明,主要和痕量金属以及磷的浓度表现出显着的空间多样性,几乎所有元素都超过了工业化前的本底值,这应部分与沉积物组成的变化有关。因此,引入了保守的元素归一化方法,并参考了计算出的元素富集因子(EFs),以突出人类污染。除锌,铅和铜外,主要金属和痕量金属的EF均接近1.0,表明碎屑来源。 Zn,Pb,Cu和磷的EF分别为1.0-10.4、1.0-3.8、1.0-4.9和1.0-7.6,显示出中度到重度污染。锌,铅和铜的较高EF发生在南fei河和Z高河口区,分别下降到西北和东北湖区的湖中心。我们推论,人为的锌,铅和铜主要来自城市和工业的点源,而大气沉积的非点源对其污染的贡献很小。磷的EFs显示出与Zn,Pb和Cu相似的空间降解。此外,除南飞河和Z高河外,其他与河口相邻的地区也有较高的磷EFs(> 1)。这表明,除了城市污水源外,面源农业也可能是巢湖磷污染的原因。人为磷主要集中在NaOH-P的形态中,其潜在的生物效应高于碎屑部分。锌,铅和铜的浓度超过了基于共识的淡水生态系统沉积物质量准则的阈值效应浓度(TEC),尤其是在巢湖西北部受污染的地区。这突出了人为污染对痕量金属潜在的潜在生物效应升高的贡献。尽管巢湖没有明显的人为污染Cr和Ni的现象,但是整个TECs中的浓度都很高,这可能是由于巢湖流域土壤和基岩母质的本底含量较高。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2012年第4期|p.2105-2118|共14页
  • 作者单位

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences,73, East Beijing Road, Nanjing, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences,73, East Beijing Road, Nanjing, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences,73, East Beijing Road, Nanjing, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences,73, East Beijing Road, Nanjing, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sediments; Trace metals; Phosphorus; Human contamination; Source; Chaohu Lake;

    机译:沉积物微量金属磷人为污染来源巢湖;
  • 入库时间 2022-08-17 13:27:36

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