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Thallium pollution in sediments response to consecutive water seasons in Three Gorges Reservoir using geochemical baseline concentrations

机译:利用地球化学基线浓度,沉积物沉积物沉积物污染对连续三峡库区的连续水季节

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摘要

The Three Gorges Reservoir (TGR) is the world's largest hydrological project. However, the response of thallium (Tl) in TGR sediments to reservoir operation remains highly uncertain. Here, we investigated the pollution characteristics of Tl in TGR sediments during five consecutive water seasons. Geochemical baseline concentrations (GBCs) were used to distinguish the anthropogenic input of Tl and to quantitatively estimate the Tl anthropogenic contribution in TGR sediments. The results showed that the average Tl concentration in TGR sediments was 0.72 +/- 0.14 mg/kg (ranging from 0.26 to 1.07 mg/kg) during five consecutive water seasons. The average Tl content in tributary sediment was higher than that in mainstream sediment. In the mainstream, Tl in TGR sediments showed an accumulation tendency from the upstream to downstream. Additionally, the temporal variation revealed that the mean value of Tl in TGR sediments in the dry season was higher than that in the wet season during 2015-2016. Furthermore, the average GBCs of Tl (0.71 mg/kg) was higher than background values (BVs) in the Yangtze River sediments. Using the GBCs of different water seasons to calculate the anthropogenic input of Tl in the TGR, the average anthropogenic contribution was found to be approximately 6.43% (2.81%-9.12%). The assessment results by two different methods (geo-accumulation index and potential ecological risk index) used GBCs as the BVs, indicating that TGR sediments were at "uncontaminated" level and close to the "low ecological risk", respectively. Comparing to the GBC of Tl, the assessment of Tl pollution in TGR using BVs in the Yangtze River sediments may be over-evaluated. This study is beneficial for assessing Tl pollution in TGR sediments response to consecutive water seasons and estimating the anthropogenic contribution of Tl.
机译:三峡库(TGR)是世界上最大的水文项目。然而,TGR沉积物对储层操作的铊(TL)的响应仍然非常不确定。在这里,我们在连续五个水季期间调查了TGR沉积物中TL的污染特征。地球化学基线浓度(GBCS)用于区分TL的人为输入,并定量估计TGR沉积物中的TL人为贡献。结果表明,TGR沉积物中的平均T1浓度为50.72 +/- 0.14mg / kg(在连续五个水季期间的0.26至1.07mg / kg)。支流沉积物的平均TL含量高于主流沉积物。在主流中,TGR沉积物中的TL显示出从上游到下游的积累趋势。另外,时间变异显示,在干燥季节中TGR沉积物中T1的平均值高于2015 - 2016年湿季节。此外,T1(0.71mg / kg)的平均GBC高于长江沉积物的背景值(BVS)。使用不同水域的GBCS来计算TGR中TL的人为输入,发现平均人为贡献约为6.43%(2.81%-9.12%)。评估结果通过两种不同的方法(地理累积指数和潜在的生态风险指数)使用GBC作为BVS,表明TGR沉积物分别在“未污染”水平上,分别接近“低生态风险”。与TL的GBC相比,可以过度评价使用长江沉积物中BVS在TGR中进行TL污染的评估。本研究有利于评估TGR沉积物对连续水季节的TG污染,并估算TL的人为贡献。

著录项

  • 来源
    《Journal of Hydrology》 |2018年第2018期|共8页
  • 作者单位

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    Thallium; Sediments; Three Gorges Reservoir; Geochemical baseline; Consecutive water seasons; Pollution assessment;

    机译:铊;沉积物;三峡库区;地球化学基线;连续水季节;污染评估;

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