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具有结合凝胶层的薄膜扩散梯度技术的性能特征,用于测量砷(V)、硒(VI)、钒(V)和锑(V),其中凝胶层含有沉淀的水铁矿。

Performance characteristics of diffusive gradients in thin films equipped with a binding gel layer containing precipitated ferrihydrite for measuring arsenic(V), selenium(VI), vanadium(V), and antimony(V).

机构信息

Lancaster Environment Centre, Lancaster University, Lancaster, LA1 4YQ, United Kingdom, and Rhizosphere Ecology and Biogeochemistry Group, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences, Peter-Jordan-Strasse 82, 1190 Vienna, Austria.

出版信息

Anal Chem. 2010 Nov 1;82(21):8903-9. doi: 10.1021/ac101676w. Epub 2010 Oct 11.

Abstract

Measurements at high spatial resolution by DGT (diffusive gradients in thin films) require a binding agent that is homogeneously distributed in the binding layer. Formation of ferrihydrite by in situ precipitation within a hydrogel has been previously shown to meet these requirements for the measurement of oxyanions by DGT. Here, we report for the first time detailed performance characteristics of the binding gel and associated DGT devices obtained by deployment in known solutions. To allow comparison of measured and theoretical accumulation of As(V), Se(VI), V(V), and Sb(V), their diffusion coefficients were determined using an independent diffusion cell. Theoretical responses were obtained irrespective of ionic strength (1-100 mmol L(-1)) and pH (3-8), except for Se above pH 7.8 and V below pH 5. Calculated detection limits, based on deployment times of 1 day, were lower than those for devices made with a binding gel cast with a ferrihydrite slurry, and the measured capacity of the binding layer was also superior. There was no evidence for interference from other oxyanions, but binding performance showed some deterioration after 38 days of storage. The potential capability for measuring labile forms of these oxyanions in acidic to neutral, fresh to brackish waters was demonstrated.

摘要

通过 DGT(薄膜扩散梯度)进行高空间分辨率测量需要一种结合剂,该结合剂在结合层中均匀分布。先前已经证明,通过水凝胶中的原位沉淀形成水铁矿,可以满足通过 DGT 测量含氧阴离子的要求。在这里,我们首次报告了在已知溶液中部署时获得的结合凝胶和相关 DGT 装置的详细性能特征。为了允许比较测量和理论上 As(V)、Se(VI)、V(V)和 Sb(V)的积累,使用独立的扩散池确定了它们的扩散系数。除了 pH 值高于 7.8 的 Se 和 pH 值低于 5 的 V 之外,理论响应与离子强度(1-100 mmol L(-1))和 pH(3-8)无关。基于 1 天的部署时间计算出的检测限低于使用铁氧化物泥浆铸造的结合凝胶制成的设备的检测限,并且结合层的测量容量也更高。没有证据表明存在其他含氧阴离子的干扰,但在储存 38 天后,结合性能显示出一些恶化。证明了在酸性到中性、新鲜到微咸水中测量这些含氧阴离子的可利用形式的潜在能力。

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