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首页> 外文期刊>The Science of the Total Environment >Metal partitioning and speciation in a mining-impacted estuary by traditional and passive sampling methods
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Metal partitioning and speciation in a mining-impacted estuary by traditional and passive sampling methods

机译:通过传统和被动采样方法在采矿冲击河口的金属分区和形态

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摘要

This study deals with the metal partitioning and bioavailability of metal/loids in the estuary Ria of Huelva (SW Spain) which is strongly affected by historical mining and industrial activities. To address this issue, traditional (i.e., grab samples) and passive sampling (i.e., diffusive gradient in thin films, DGTs) was carried out in the outer part of the estuary during different tidal cycles in order to determine the dissolved and particulate metal/loid concentrations. The dissolved concentrations exceeded, by several orders of magnitude, those reported in other estuaries worldwide that are affected by anthropogenic activities. A spatial pattern was observed in the metal distribution; a decrease seaward was recorded for some of the elements associated with mining (e.g., Cu, Zn. and Cd), the opposite tendency is observed for others associated with harbor emissions (e.g., Sn, Ni, or Pb). A different metal/loid partitioning pattern was also observed; Fe, and to a lesser extent Pb and Sn, were chiefly found in the particulate matter, while the rest of the elements were mainly found in the dissolved form. The bioavailability of the metal/loids was studied by speciation using both geochemical modeling and DGTs; while concentrations in DGTs supported metal/loid speciation for Zn, Cd, Mn, Co, As, and Sb according to their affinity to form strong or weak complexes, some discrepancies were observed for other elements such as Cu, V, Fe, and Pb, which are prone to forming strong complexes. The main reason behind the unexpectedly high Fe and Pb DGTs concentrations may be associated with their presence in the colloidal particles passing through the DGT. There was a strong positive correlation between dissolved and DGT concentrations for Cd and Mn, and to a lesser extent for Fe and Cu, highlighting the direct relationship between the concentrations in water and availability to living organisms in the estuary.
机译:本研究涉及金属/懒惰的金属分配和生物利用性,在韦尔瓦(SW西班牙)的河口ria,受历史矿业和工业活动的强烈影响。为了解决这个问题,在不同的潮汐循环期间在浅尘周期的外部进行传统(即,抓取样本)和被动采样(即,薄膜中的扩散梯度,DGT),以确定溶解和颗粒金属/懒散浓度。超过几个数量级的溶解浓度,在全球范围内的其他河口受到人为活动的影响。在金属分布中观察到空间模式;对与挖掘有关的一些元素的一些元素记录了减少(例如,Cu,Zn和Cd),对于与港口排放相关的其他元素(例如,Sn,Ni或Pb),观察到相反的趋势。还观察到不同的金属/池池分区图案; FE,以及较小程度的Pb和Sn,主要在颗粒物质中发现,而其余的元素主要以溶解形式发现。通过使用地球化学建模和DGT进行的形态研究了金属/松弛的生物利用度;虽然根据它们的亲和力,但根据其亲和力,在DGT的浓度支持金属/懒散的Zn,Cd,Mn,Co,AS和Sb,但对于其他元素,例如Cu,V,Fe和Pb,观察到一些差异,这易于形成强复合物。意外的高Fe和Pb DGTS浓度背后的主要原因可能与它们在通过DGT的胶体颗粒中的存在相关。 CD和Mn的溶解和DGT浓度之间存在良好的正相关性,并在较小程度上进行Fe和Cu,突出了水中浓度与河口生物的可用性之间的直接关系。

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  • 来源
    《The Science of the Total Environment 》 |2020年第20期| 137905.1-137905.12| 共12页
  • 作者单位

    Department of Earth Sciences and Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' Fuerzas Armadas s 21071 Huelva Spain;

    Department of Earth Sciences and Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' Fuerzas Armadas s 21071 Huelva Spain;

    Department of Earth Sciences and Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' Fuerzas Armadas s 21071 Huelva Spain;

    Department of Earth Sciences and Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' Fuerzas Armadas s 21071 Huelva Spain;

    Department of Earth Sciences and Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' Fuerzas Armadas s 21071 Huelva Spain;

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

    Bioavailability; Diffusive gradient in thin films (DGT); Metal toxicity; Metal pollution; Passive samplers;

    机译:生物利用度;薄膜(DGT)中的扩散梯度;金属毒性;金属污染;被动采样器;

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