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Laboratory and field evaluation of diffusive gradient in thin films (DGT) for monitoring levels of dissolved mercury in natural river water

机译:用于监测天然河水中溶解汞水平的薄膜扩散梯度(DGT)的实验室和现场评估

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摘要

The diffusive gradient in the thin films (DGT) technique was tested to measure dissolved mercury (Hg) both in laboratory aqueous solutions and in situ in river water. For this purpose, a commercial ready-to-use and specific-for-Hg DGT device was used. Each sampler consisted of a filter membrane-agarose gel as the diffusive layer and a Spheron-Thiol resin in polyacrylamide gel as the binding agent. Basic performance assays at the laboratory with this type of DGT unit confirmed the applicability of Fick's first law for DGT measurements. The diffusion coefficient of MeHg in the agarose diffusive gel was 8.50 × 10~(-6)cm~2 s~(-1) at 25℃. Several field studies were also carried out in two different rivers of the Ebro River basin (NE Spain) affected by Hg wastes released by the chlor-alkali industry. Hg concentrations determined by DGT were generally much lower than the results obtained through direct measurements of the river water. In addition, the results of a time series experiment also performed in the field show that the amount of Hg accumulated in the resin does not increase at all with the exposure time. This may be explained by the underestimation of the truly dissolved Hg fraction due to the formation of a biofilm layer on the surface of the samplers, thus clogging the filter and preventing Hg species from diffusing through it. Consequently, it was demonstrated that the DGT technique presents important limitations for measuring Hg in polluted rivers characterised by a high biomass load (eutrophic), whereas its performance was demonstrated to be correct in oligotrophic waters.
机译:测试了薄膜(DGT)技术中的扩散梯度,以测量实验室水溶液和河水中的溶解汞(Hg)。为此,使用了商用的即用型和汞专用DGT设备。每个取样器由滤膜-琼脂糖凝胶作为扩散层和聚丙烯酰胺凝胶中的Spheron-Thiol树脂作为粘合剂。这种类型的DGT装置在实验室进行的基本性能分析证实了Fick第一定律对DGT测量的适用性。 25℃下,MeHg在琼脂糖扩散凝胶中的扩散系数为8.50×10〜(-6)cm〜2 s〜(-1)。在埃布罗河流域(西班牙东北)的两条不同河流中,还进行了几项现场研究,这些河流受到氯碱工业释放的汞废物的影响。 DGT测定的汞浓度通常远低于直接测量河水所获得的结果。另外,在该领域中还进行的时间序列实验的结果表明,树脂中积累的汞量根本不会随着暴露时间而增加。这可能是由于在采样器表面上形成了生物膜层,从而低估了真正溶解的Hg分数,从而堵塞了过滤器并防止了Hg扩散。因此,事实证明,DGT技术在以高生物量负荷(富营养化)为特征的污染河流中测量汞具有重要的局限性,而其性能在贫营养化水中证明是正确的。

著录项

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  • 作者单位

    Environmental Chemistry Department, Institute of Environmental Assessment and Water Research, IDAEA-CSIC, Barcelona, Spain;

    Environmental Chemistry Department, Institute of Environmental Assessment and Water Research, IDAEA-CSIC, Barcelona, Spain;

    Environmental Chemistry Department, Institute of Environmental Assessment and Water Research, IDAEA-CSIC, Barcelona, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DGT; mercury; methylmercury; river water; bioavailable;

    机译:DGT;汞;甲基汞河水生物利用度;

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