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首页> 外文期刊>The Science of the Total Environment >Total mercury and methylmercury in the soil and vegetation of a riparian zone along a mercury-impacted reservoir
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Total mercury and methylmercury in the soil and vegetation of a riparian zone along a mercury-impacted reservoir

机译:沿着汞冲击水库土壤和河岸区植被的汞和甲基汞

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摘要

The Baihua Reservoir (Guizhou Province, Southwest China) has a history of mercury contamination associated with past acetic acid production activities at the Guizhou Organic Chemical Plant (GOCP). Soil and plant samples collected from riparian zones were analyzed for total Hg (THg) and methylmercury (MeHg) using cold vapor atomic fluorescence spectroscopy. The concentrations of THg and MeHg in soil samples were in the range of 109-371 ng g~(-1) and 0.32-1.80 ng g~(-1), respectively. Soils in the riparian zones close to the pollution source (the GOCP) presented higher Hg contamination, with relatively light Hg contamination in remote areas. This suggests a decreasing trend of THg concentrations along the riparian zones, with higher concentrations closer to the pollution source. Significant correlations were found between MeHg and soil organic matter (n = 24, p = 0.01). THg concentrations varied 11.3-161 ng g~(-1) in aboveground areas and 11.3-193 ng g~(-1) in underground areas. MeHg concentrations ranged from 0.23 to 1.06 ng g~(-1) in aboveground areas to 0.13-1.51 ng g~(-1) in the below ground areas. The vegetation studied showed different concentrations of THg and MeHg and can be considered to be impacted by Hg contamination. Different concentrations of total and methyl mercury were found among the different plant species. The high Hg concentrations in soils and vegetation suggests that the ability of Hg to bioaccumulate in riparian plants is affected by plant physiological characteristics and soil mercury concentrations. Although the bioaccumulation factors (BCFs) of the studied plants were low, their transfer factors (TFs) were >1. Our findings suggest that vegetation exhibiting TFs for THg >1 have the potential for phytoextraction in Hg-impacted riparian zones.
机译:白华水库(贵州省,中国西南部)历史杂乱污染与贵州有机化工厂(GOCP)的过去醋酸生产活动相关。使用冷蒸气原子荧光光谱分析从河里河河区收集的土壤和植物样品进行HG(THG)和甲基汞(MEHG)。土壤样品中的THG和MEHG的浓度分别为109-371ng g〜(-1)和0.32-1.80ng g〜(-1)。靠近污染源(GOCP)的河岸区域中的土壤呈现出较高的Hg污染,在偏远地区具有相对轻的Hg污染。这表明沿着河岸区沿河岸区浓度的趋势降低,较高浓度更接近污染源。在MeHG和土壤有机物之间发现显着的相关性(n = 24,p = 0.01)。 THG浓度在地下区域的11.3-161 ng g〜(-1)和地下区域11.3-193 ng g〜(-1)。 Mehg浓度在下面的地上区域为0.23至1.06 ng g〜(-1)到下面的地面下的0.13-1.51 ng g〜(-1)。研究的植被显示出不同浓度的THG和MEHG,并且可以被认为受到HG污染的影响。在不同的植物物种中发现了不同浓度的总和和甲基汞。土壤和植被中的高Hg浓度表明,Hg在河流植物中对生物累积的能力受植物生理特性和土壤汞浓度的影响。虽然所研究的植物的生物积累因子(BCFS)低,但它们的转移因子(TFS)> 1。我们的研究结果表明,植被表现出TFS的TFS> 1具有植物区的植物区植物申请的可能性。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|139794.1-139794.8|共8页
  • 作者单位

    Key Laboratory for Information System of Mountainous Area and Protection of Ecological Environment of Guizhou Province Guizhou Normal University Guiyang 550001 China Guizhou International Science & Technology Cooperation Base-International Joint Research Centre for Aquatic Ecology Guizhou Normal University Guiyang 550001 China;

    Key Laboratory for Information System of Mountainous Area and Protection of Ecological Environment of Guizhou Province Guizhou Normal University Guiyang 550001 China;

    State Key Laboratory of Environmental Geochemistry Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China;

    Faculty of Foreign Studies Beijing Language and Culture University Beijing 100083 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Riparian zone; MeHg; THg; Phytoremediation; Pollution;

    机译:河岸区;mehg;THG;植物修复;污染;

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