首页> 外文期刊>The Science of the Total Environment >Evaluation of diffusive gradients in thin films (DGT) technique for speciation of trace metals in estuarine waters - A multimethodological approach
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Evaluation of diffusive gradients in thin films (DGT) technique for speciation of trace metals in estuarine waters - A multimethodological approach

机译:脱卤水稻痕量金属薄膜(DGT)技术的缩小梯度评价 - 一种多水曲目

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摘要

Understanding the potential bioavailability of trace metals (TM) in marine systems is of prime importance to implement adapted regulations and efficiently protect our coastal and estuarine waters. In this study Diffusive Gradients in Thin films (DGT) technique with two different pore size was used to evaluate the potentially bioavailable fractions (DGT-labile) of Cd, Co, Cu, Ni, Pb and Zn at various depths of a highly stratified estuary (the Krka River estuary, Croatia) both in winter and summer. DGT-labile concentrations were compared to (1) total dissolved concentrations, (2) concentrations of labile species measured by anodic stripping voltamme-try (ASV-labile) for Cu and (3) concentrations derived by chemical speciation modelling. High correlation between dissolved and DGT-labile concentrations was found for all metals, except for Zn where contamination problems prevented reliable conclusions. Percentages of DGT-labile fractions over total dissolved concentrations were (AVG ± SD): 92 ± 3%, 64 ± 2%, 23 ± 5%, 61 ± 3% and 57 ± 6% for Cd, Pb, Cu, Ni and Co. respectively. No significant difference was found between trace metal concentrations measured with an open pore and restricted pore devices, implying the predominance of kinetically labile metal complexes smaller than 1 nm. For Cu, ASV-labile and DGT labile concentrations were highly correlated (0.97) with ASV-labile concentration being around 35% lower than that of the DGT-labile. Modelling of chemical speciation reliably predicted dynamic (free, inorganic and part of organic complexes) concentration of Cd, whereas dynamic concentrations of Cu and Pb were underestimated by 32% and 65%, respectively. In view of the relative simplicity of DGT devices, they are well suited for the monitoring effort of coastal waters, informing on potentially bioavailable concentrations of TM and thereby, helping to achieve good environmental status of coastal waters, as stipulated within the EU Water Framework Directive.
机译:了解海洋系统中痕量金属(TM)的潜在生物利用度是实施适应法规的重要性,并有效保护我们的沿海和河口水域。在该研究中,使用两种不同孔径的薄膜(DGT)技术中的扩散梯度用于评估在高度分层浅水的各种深度的CD,CO,Cu,Ni,Pb和Zn的潜在生物可利用的级分(DGT-LABILL) (Krka河口,克罗地亚)在冬天和夏天。将DGT - 不稳定浓度与(1)通过化学格式模拟衍生的Cu和(3)浓度的阳极剥离伏安 - 试验(ASV-LABIEL)测量的总溶解浓度,(2)测量的不稳定物种。除了Zn,发现所有金属的溶解和DGT - 不稳定浓度之间的高度相关性,其中ZN污染问题阻止了可靠的结论。 CD,Pb,Cu,Ni和Cd的总溶解浓度上的DGT±3%,64±2%,23±5%,61%和57±6%的DGT±3%,64±2%,23±5%,61%)有限公司分别。在用开孔和限制孔装置测量的痕量金属浓度之间没有发现显着差异,暗示了小于1nm的动力学稳定金属配合物的主要效应。对于Cu,ASV-Libile和DGT不稳定浓度高(0.97),ASV - 不稳定浓度比DGT稳定性低约35%。化学物质的建模可靠地预测了CD的动态(无机,无机和部分)浓度Cd,而Cu和Pb的动态浓度分别低至32%和65%。鉴于DGT器件的相对简单性,它们非常适合沿海水域的监控工作,了解潜在的生物可利用浓度的TM,从而有助于实现沿海水域的良好环境状态,如欧盟水框架指令所规定的规定。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第15期|137784.1-137784.15|共15页
  • 作者单位

    Ruaer Boskovic Institute Center for Marine and Environmental Research Bijenicka 54 Zagreb Croatia;

    Ruaer Boskovic Institute Center for Marine and Environmental Research Bijenicka 54 Zagreb Croatia;

    Universite de Toulon Aix Marseille Universite CNRS/INSU IRD MIO UM 110 Mediterranean Institute of Oceanography La Garde France;

    Department of Earth and Ocean Sciences University of Liverpool Brownlow Street Liverpool L69 3GP UK;

    Ruaer Boskovic Institute Center for Marine and Environmental Research Bijenicka 54 Zagreb Croatia;

    Universite de Toulon Aix Marseille Universite CNRS/INSU IRD MIO UM 110 Mediterranean Institute of Oceanography La Garde France;

    Universite de Toulon Aix Marseille Universite CNRS/INSU IRD MIO UM 110 Mediterranean Institute of Oceanography La Garde France;

    Ruaer Boskovic Institute Center for Marine and Environmental Research Bijenicka 54 Zagreb Croatia;

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

    Bioavailability; Trace metals; Stratified estuary; Krka River estuary; Diffusive gradients in thin films (DGT); Speciation modelling;

    机译:生物利用度;痕量金属;分层河口;克尔卡河口;薄膜(DGT)中的扩散梯度;形态建模;
  • 入库时间 2022-08-18 22:36:15

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