Galceran Josep, Gao Yue, Puy Jaume, Leermakers Martine, Rey-Castro Carlos, Zhou Chunyang, Baeyens Willy
Departament de Química, Universitat de Lleida and AGROTECNIO-CERCA, Lleida, Spain.
Analytical, Environmental and Geo-Chemistry Department, Vrije Universiteit Brussel, Brussels, Belgium.
Front Chem. 2021 Apr 6;9:624511. doi: 10.3389/fchem.2021.624511. eCollection 2021.
The speciation of trace metals in an aquatic system involves the determination of free ions, complexes (labile and non-labile), colloids, and the total dissolved concentration. In this paper, we review the integrated assessment of free ions and labile metal complexes using Diffusive Gradients in Thin-films (DGT), a dynamic speciation technique. The device consists of a diffusive hydrogel layer made of polyacrylamide, backed by a layer of resin (usually Chelex-100) for all trace metals except for Hg. The best results for Hg speciation are obtained with agarose as hydrogel and a thiol-based resin. The diffusive domain controls the diffusion flux of the metal ions and complexes to the resin, which strongly binds all free ions. By using DGT devices with different thicknesses of the diffusive or resin gels and exploiting expressions derived from kinetic models, one can determine the labile concentrations, mobilities, and labilities of different species of an element in an aquatic system. This procedure has been applied to the determination of the organic pool of trace metals in freshwaters or to the characterization of organic and inorganic complexes in sea waters. The concentrations that are obtained represent time-weighted averages (TWA) over the deployment period.
水生系统中痕量金属的形态分析涉及游离离子、配合物(不稳定和稳定的)、胶体以及总溶解浓度的测定。在本文中,我们综述了使用薄膜扩散梯度技术(DGT)对游离离子和不稳定金属配合物进行的综合评估,这是一种动态形态分析技术。该装置由聚丙烯酰胺制成的扩散水凝胶层组成,除汞外,所有痕量金属的扩散水凝胶层后面都有一层树脂(通常是Chelex - 100)。对于汞形态分析,使用琼脂糖作为水凝胶和硫醇基树脂可获得最佳结果。扩散区域控制金属离子和配合物向树脂的扩散通量,树脂会强烈结合所有游离离子。通过使用具有不同厚度扩散凝胶或树脂凝胶的DGT装置,并利用动力学模型推导的表达式,可以确定水生系统中某一元素不同形态的不稳定浓度、迁移率和活性。该方法已应用于淡水痕量金属有机库的测定或海水有机和无机配合物的表征。所获得的浓度代表了部署期间的时间加权平均值(TWA)。