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Underestimated heavy metal pollution of the Minjiang River, SE China: Evidence from spatial and seasonal monitoring of suspended-load sediments

机译:岷江,SE中国的低估了重金属污染:悬浮沉积物的空间和季节性监测的证据

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摘要

Previous assessments on rivers in SE China with highly developed economy and enormous population indicate diverse and relatively low particulate heavy metal pollution levels. However, the controlling mechanisms for heavy metal enrichment and transport remain enigmatic. Here, we target a mesoscale mountainous river, the Minjiang River, and obtain grain size, mineralogical and heavy metal concentration (Pb, Cd, Cr, Mn, Mo, Zn, V, Co, Ni, Cu) data from seasonal suspended particulate matter (SPM) near the river mouth, riverbed sediments and SPM samples from mainstream and major tributaries of the river. The results indicate that SPM samples have higher particulate heavy metal concentrations than riverbed sediments collected in pairs. Heavy metal concentrations of Cd, Zn, Cr, V, Co, Ni and Cu are higher in upstream SPM samples than those in downstream regions, whereas Pb, Mn and Mo concentrations don't show this spatial variation. Most heavy metals (e.g., Pb and Zn) show high concentrations in flood seasons and relatively low concentrations in dry seasons, revealing a hydro-logic control. However, Cr and Mn show high concentrations in some dry season samples, suggesting incidental anthropogenic input events. The SPM-based pollution assessments using enrichment factor, geoaccumulation index and potential ecological risk index demonstrate that the Minjiang River is moderately to strongly polluted by particulate Pb, Cd, Mo and Zn contaminations and most particulate heavy metals have moderate to considerable potential ecological risks. We contend that transport and discharge of particulate heavy metals by the Minjiang River are controlled by both natural and anthropogenic forcings and the pollution levels are worse than previously known. Our findings suggest that particulate heavy metal discharge by subtropical mountainous rivers is related to sediment types and hydrologic characteristics. Therefore, high-spatiotemporal-resolution investigations on river SPM samples are highly recommended to better evaluate particulate heavy metal pollution levels and aquatic environmental conditions.
机译:以前对高度发达的经济和巨大人口河流河流的先前评估表明了多样化且相对较低的微粒重金属污染水平。然而,用于重金属富集和运输的控制机制仍然是神秘的。在这里,我们瞄准Mescrale山区河流,岷江,并获得季节悬浮颗粒物质的粒度,矿物学和重金属浓度(Pb,Cd,Cr,Mn,Mo,Zn,V,Co,Ni,Cu)数据(SPM)靠近河口,河床沉积物和河流主流和主要支流的SPM样本。结果表明,SPM样品比成对收集的河床沉积物具有更高的颗粒重金属浓度。高度金属浓度的CD,Zn,Cr,V,Co,Ni和Cu比下游区域中的浓度高于上游区域,而Pb,Mn和Mo浓度不会显示出这种空间变化。大多数重金属(例如,Pb和Zn)在洪水季节和干燥季节中的浓度相对较低,揭示了水力逻辑控制。然而,Cr和Mn显示出一些干燥季节样本中的高浓度,表明偶然的人为输入事件。基于SPM的污染评估使用浓缩因子,地理分解指数和潜在的生态风险指数表明,岷江中度颗粒状Pb,Cd,Mo和Zn污染和大多数颗粒状重金属的强烈污染,具有中度至相当大的潜在生态风险。我们争辩说,岷江颗粒重金属的运输和排放由天然和人为强制控制,污染水平比以前所知的更差。我们的研究结果表明,通过亚热带山区河流的微粒重金属放电与沉积物类型和水文特性有关。因此,强烈建议在河流SPM样品上进行高时滞的分辨率调查,以更好地评估微粒重金属污染水平和水生环境条件。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|142586.1-142586.16|共16页
  • 作者单位

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen 36) 102 PR China;

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen 36) 102 PR China;

    Research Institute of Petroleum Exploration and Development (RIPED) PetroChina Beijing 100083 PR China;

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen 36) 102 PR China;

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen 36) 102 PR China;

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen 36) 102 PR China;

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

    Heavy metal; Suspended particulate matter; Spatial and seasonal variation; Environmental assessment; Minjiang River;

    机译:重金属;悬浮的颗粒物质;空间和季节性变化;环境评估;岷江河;

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