首页> 外文期刊>Water, Air, and Soil Pollution >DETERMINATION OF HIGH RESOLUTION PORE WATER PROFILES OF TRACE METALS IN SEDIMENTS OF THE RUPEL RIVER (BELGIUM) USING DET (DIFFUSIVE EQUILIBRIUM IN THIN FILMS) AND DGT (DIFFUSIVE GRADIENTS IN THIN FILMS) TECHNIQUES
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DETERMINATION OF HIGH RESOLUTION PORE WATER PROFILES OF TRACE METALS IN SEDIMENTS OF THE RUPEL RIVER (BELGIUM) USING DET (DIFFUSIVE EQUILIBRIUM IN THIN FILMS) AND DGT (DIFFUSIVE GRADIENTS IN THIN FILMS) TECHNIQUES

机译:使用DET(薄膜中的扩散平衡)和DGT(薄膜中的扩散梯度)技术测定Rupel河(比利时)沉积物中的痕量金属的高分辨率孔隙水特征

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摘要

The techniques of diffusional equilibrium in thin films (DET) and diffusional gradients in thin films (DGT) were used to obtain high resolution pore water profiles of total dissolved and labile trace (mobilizable) metals in the sediments of the Rupel River, Belgium. DGT measures labile metal species in situ by immobilizing them on a resin gel after diffusion through a diffusive gel whereas for DET an equilibrium is established between the DET gel and the pore water. Concentrations of Pb and Zn obtained by DGT were in good agreement with the results obtained by centrifugation, and thus were well buffered by rapid equilibrium with the solid phase, whereas Fe, Mn and Cd were very tightly bound to the sediment phase and large differences were observed between the labile and the total metal concentrations. Cu, Zn, Co and Ni show intermediated behavior. Good correlations were found between the profiles of As and Fe and Mn and Co for DET as well as DGT showing a close link between the geochemical behavior of these elements. Cu, Zn, Pb and Cd are also influenced by the reductive mobilization of Fe and Mn oxides but are also closely linked to the bacterial degradation of organic matter in the surface sediments as to the precipitation of metal sulfides in the deeper layers.
机译:使用薄膜中的扩散平衡(DET)和薄膜中的扩散梯度(DGT)技术来获得比利时鲁贝尔河沉积物中总溶解和不稳定的微量(可移动)金属的高分辨率孔隙水剖面。 DGT通过在扩散凝胶中扩散后将不稳定的金属物种固定在树脂凝胶上来原位测量不稳定的金属物种,而对于DET,在DET凝胶和孔隙水之间建立了平衡。 DGT获得的Pb和Zn的浓度与离心分离的结果非常吻合,因此可以通过与固相的快速平衡得到很好的缓冲,而Fe,Mn和Cd与沉积相的结合非常紧密,并且差异很大。在不稳定和总金属浓度之间观察到。 Cu,Zn,Co和Ni表现出中间行为。发现DET的As和Fe以及Mn和Co的分布之间具有良好的相关性,而DGT显示了这些元素的地球化学行为之间的紧密联系。 Cu,Zn,Pb和Cd也受Fe和Mn氧化物的还原迁移作用的影响,但也与表层沉积物中有机物的细菌降解以及更深层中的金属硫化物的沉积密切相关。

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