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Investigation on trace metal speciation and distribution in the Scheldt estuary

机译:Scheldt河口痕量金属形态和分布的调查

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摘要

The biogeochemical behavior of Cd, Co, Cr, Cu, Ni and Pb along the historically polluted Scheldt estuary (Belgium -The Netherlands) was investigated in this study. As never studied before in this area, labile trace metals were measured using the passive sampling technique of Diffusive Gradients in Thin-films (DGT), while total dissolved and paniculate trace metal concentrations were assessed using classic active sampling techniques. This dual approach allowed us to highlight the variations of trace metal speciation and distribution in the estuarine surface waters, considering environmental and physicochemical gradients along the transect. The large data set obtained was then compared with literature data of historical measurements along the Scheldt (from 1980 until now), but also from other estuaries. As emphasized by our results, trace metal mobility and partitioning along the Scheldt estuary was mainly driven by biogeochemical reactions which were strongly influenced by gradients of specific estuarine physico-chemical parameters, such as salinity, turbidity, temperature and so on. Hence, all species of trace metals displayed a non-conservative behavior. More precisely, dissolved labile fractions of trace metals showed higher levels in the middle estuary, where many solubilization and remobilization processes occurred due to turbulent mixing mechanisms and an increasing salinity. Our study confirmed the decreasing trend historically observed for particulate metals along the Scheldt, as well as the rising concentrations recorded for dissolved trace metals which might also lead to an increase of their labile fraction measured by the DGT. Finally, these preliminary results suggested that a more regular monitoring of labile metal along the Scheldt estuary is essential to have an in-depth understanding of trace metal speciation and to review bioavailability of trace metals within estuarine ecosystems.
机译:该研究在历史上污染的Scheldte(比利时 - 荷兰)沿着历史上污染的Scheldt河口(比利时)的生物地球化学行为。由于在该区域之前从未研究过,使用薄膜(DGT)中的漫射梯度的被动采样技术测量不稳定的痕量金属,而使用经典的主动采样技术评估总溶解和痕量金属浓度。这种双重方法使我们能够突出沿着横断的环境和物理化学梯度的痕量金属形态和分布的变化。然后将获得的大数据集与沿Scheldt(从1980年到现在起)的历史测量的文献数据进行了比较,而且来自其他河口。正如我们的结果强调,追踪金属迁移率和沿Scheldt河口的分区主要由生物地球化学反应驱动,这些反应受到特异性偏卤素物理化学参数的梯度,如盐度,浊度,温度等强烈影响。因此,所有痕量金属的痕量金属显示出非保守行为。更精确地,痕量金属的溶解不稳定级分在中间河口中显示出较高的水平,其中由于湍流混合机制和盐度的增加,发生了许多溶解和重新化方法。我们的研究证实了历史上沿施尔特颗粒金属的降低趋势,以及记录溶解的痕量金属的上升浓度,这也可能导致DGT测量的不稳定级分。最后,这些初步结果表明,沿斯普尔特河口的不稳定金属更加定期监测对痕量金属形态的深入理解,并回顾散系生态系统中痕量金属的生物利用度。

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  • 来源
    《Science of the total environment 》 |2021年第25期| 143827.1-143827.13| 共13页
  • 作者单位

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium LASIRE CNRS UMR 8516 Universite de Lille Cite Scientifique 59655 Villeneuve d'Ascq Cedex France;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium College of Architecture and Civil Engineering Beijing University of Technology Beijing 100124 China;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium Bmo University of Technology Faculty of Chemistry Purkynova 118 Bmo 62100 Czech Republic;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium;

    Analytical Environmental and Geo-Chemistry Department (AMCC) Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium;

    LASIRE CNRS UMR 8516 Universite de Lille Cite Scientifique 59655 Villeneuve d'Ascq Cedex France;

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

    Biogeochemical cycle; Trace metal speciation; DCT; Non-conservative; Scheldt estuary;

    机译:生物地球化学循环;痕量金属形态;DCT;非保守;Scheldt河口;

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