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New In-Situ Procedures for Measuring Trace Metals in Pore Waters

机译:测量孔隙水中痕量金属的新现场程序

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The most mobile and biological and chemically active fractions of trace metals in sediments are the dissolved components present in pore waters. Measuring metals in pore waters is complicated by the requirement for anoxic handling procedures. Due to the dynamic nature of sediment, steep concentration gradients extending over as little as 1 mm may develop at the sediment-water interface. New procedures for measuring metals in pore waters using polyacrylamide gels as in-situ probes are described. The gel can be used to establish a diffusive equilibration in a thin-film (DET). Because the film is typically less than 1 mm thick, equilibration is achieved within five minutes and insertion of the gel assembly causes minimal disturbance of sediment. An alternative procedure is to use a diffusive gradient in a thin-film (DGT), whereby a monolayer of chelating resin is incorporated at one side of the gel. Such a technique provides a kinetic measurement of labile species in solution. If the supply of metal from solid phase sediment to pore waters is fast enough, DGT provides a quantitative estimate of labile metal concentration. Alternatively, it measures directly the rate of supply of metal from solid phase to pore waters. As both DET and DGT are simple procedures capable of sub-millimetre spatial resolution, they provide previously unobtainable information on trace metal concentrations and fluxes. Furthermore, DGT has the potential to be used as a long-term monitor, providing mean concentrations of metals in sediment pore waters over periods of days, weeks, or even months.
机译:沉积物中痕量金属最具流动性,生物和化学活性的部分是存在于孔隙水中的溶解组分。缺氧处理程序的要求使测量孔隙水中的金属变得复杂。由于沉积物的动态特性,在沉积物-水界面可能会形成仅1 mm的陡峭浓度梯度。描述了使用聚丙烯酰胺凝胶作为原位探针测量孔隙水中金属的新方法。该凝胶可用于建立薄膜(DET)中的扩散平衡。由于薄膜的厚度通常小于1毫米,因此在五分钟内即可达到平衡,并且凝胶组件的插入对沉积物的干扰最小。另一种方法是在薄膜(DGT)中使用扩散梯度,从而在凝胶的一侧结合单层螯合树脂。这样的技术提供了溶液中不稳定物质的动力学测量。如果从固相沉积物到孔隙水的金属供应足够快,DGT将提供不稳定金属浓度的定量估计。或者,它直接测量从固相到孔隙水的金属供应速率。由于DET和DGT都是能够实现亚毫米空间分辨率的简单程序,因此它们提供了痕量金属浓度和通量的以前无法获得的信息。此外,DGT有潜力用作长期监测器,可提供数天,数周甚至数月的沉积物孔隙水中平均金属浓度。

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