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Evaluation of the diffusion gradient in thin-films (DGT) technique for measuring trace metal concentrations in freshwaters.

机译:评估用于测量淡水中痕量金属浓度的薄膜扩散梯度(DGT)技术。

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摘要

The recently developed Diffusion Gradient in Thin-films (DGT) technique is based on a simple device that accumulates metals in situ, over time in a Na resin gel. Metal ions diffuse through a hydrogel membrane and are rapidly bound by the resin. The many advantages associated with the DGT technique (simplicity, in situ technique, low detection limits, and ability to measure many metals) have lead to its rapid application in aquatic environments.;Caveats have been recognized with the DGT technique when it is used in aquatic environments. These include: the ability of strongly complexed organic-metal molecules to diffuse through the hydrogel and become complexed by the resin gel, and in freshwater lakes with a low concentration of cations (Sigma [cations] ≤ 2 x 10-4 M), it is hypothesized that the diffusion coefficient of metal ions entering the DGT device increases. Both of these caveats overestimate the concentrations of labile inorganic metals in the deployment solution.;The hypothesis that deploying DGT devices equipped with two different hydrogel formulations ("open" and "tight") will provide reasonable measurements of DGT-labile "organic" and "inorganic" concentrations of Mn, Cd and Pb was tested in the field.;The implication of these findings is that the DGT technique should not be used in freshwaters with low cation concentrations (Sigma [cations] ≤ 2 x 10-4 M), typical of lakes found in the Canadian environment, until the caveats of the technique have been resolved. Extreme caution should be used when drawing conclusions regarding the concentrations of inorganic and organic metal species, since it has been found the DGT devices with the two different hydrogel formulations overestimate the inorganic metal concentration relative to the organic metal concentration in aquatic environments. (Abstract shortened by UMI.).
机译:最近开发的薄膜扩散梯度(DGT)技术基于一种简单的设备,该设备会随时间在Na树脂凝胶中原位累积金属。金属离子通过水凝胶膜扩散并被树脂迅速结合。与DGT技术相关的许多优点(简单,原位技术,低检测限和测量多种金属的能力)已使其在水生环境中得到快速应用。水生环境。其中包括:高度复杂的有机金属分子扩散通过水凝胶并被树脂凝胶复合的能力,并且在阳离子浓度低(Sigma [阳离子]≤2 x 10-4 M)的淡水湖中,假设进入DGT装置的金属离子的扩散系数增加。这两个警告都高估了部署解决方案中不稳定无机金属的浓度。假设部署配备了两种不同水凝胶配方(“开放”和“紧密”)的DGT设备将提供对DGT不稳定“有机”物质的合理测量。现场测试了“无机”浓度的Mn,Cd和Pb。这些发现的含义是,DGT技术不应用于低阳离子浓度(Sigma [阳离子]≤2 x 10-4 M)的淡水中。 ,这是加拿大环境中典型的湖泊,直到该技术的警告解决为止。在得出关于无机和有机金属种类的浓度的结论时,应格外谨慎,因为已经发现具有两种不同水凝胶配方的DGT装置会高估水生环境中相对于有机金属浓度的无机金属浓度。 (摘要由UMI缩短。)。

著录项

  • 作者

    Parent, Deborah Lynn.;

  • 作者单位

    Ryerson University (Canada).;

  • 授予单位 Ryerson University (Canada).;
  • 学科 Environmental engineering.;Environmental science.
  • 学位 M.A.Sc.
  • 年度 2002
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:41

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