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利用薄膜扩散梯度技术研究沉积物和土壤中活性磷酸盐形态的含磁铁矿凝胶

Ferrihydrite containing gel for chemical imaging of labile phosphate species in sediments and soils using diffusive gradients in thin films.

机构信息

Rhizosphere Ecology and Biogeochemistry Group, Department of Forest and Soil Sciences, University of Natural Resources and Applied Life Sciences, Peter-Jordan-Strasse 82, 1190 Vienna, Austria.

出版信息

Anal Chem. 2010 Sep 15;82(18):7668-74. doi: 10.1021/ac101450j.

Abstract

We report on a novel binding gel for phosphate, based on ferrihydrite, and its use in diffusive gradients in thin films (DGT) for measuring labile phosphate species in waters, sediments, and soils. An existing method of binding layer preparation was modified to overcome potential problems with deterioration of ferrihydrite due to conversion to goethite. The gel was characterized regarding its suitability for conventional DGT measurements as well as for measuring two-dimensional distributions of P with high spatial resolution using laser ablation-inductively coupled plasma mass spectrometry (LA-ICPMS). The effects of pH, ionic strength and storage time of gels on phosphate binding were investigated and the kinetics of binding and the maximum binding capacity were determined. The gel is shown to have a considerably higher P capacity than the conventional ferrihydrite DGT binding layers. LA-ICPMS analysis of DGT standards with P concentrations ranging from 0.088 ± 0.005 to 4.47 ± 0.16 μg cm(-2) resulted in reproducible calibration curves which could be described using a simple power function. We demonstrate that the new gel is well suited for analyzing small-scale changes of P concentrations in soils. Moreover, the gel can be used as an alternative to conventional DGT gels that incorporate powdered ferrihydrite, with improved characteristics for the determination of labile phosphate.

摘要

我们报告了一种基于水铁矿的新型磷酸盐结合凝胶及其在扩散梯度薄膜(DGT)中的应用,用于测量水中、沉积物和土壤中可利用的磷酸盐。对现有的结合层制备方法进行了改进,以克服由于向针铁矿转化而导致的水铁矿恶化的潜在问题。对凝胶进行了表征,考察了其用于常规 DGT 测量的适用性,以及用于使用激光烧蚀-电感耦合等离子体质谱法(LA-ICPMS)以高空间分辨率测量 P 的二维分布的适用性。考察了 pH 值、凝胶的离子强度和储存时间对磷酸盐结合的影响,确定了结合动力学和最大结合容量。结果表明,与传统的水铁矿 DGT 结合层相比,该凝胶具有更高的磷容量。对浓度范围为 0.088 ± 0.005 至 4.47 ± 0.16 μg cm(-2) 的 DGT 标准品进行 LA-ICPMS 分析,得到了重现性好的校准曲线,可以用简单的幂函数描述。结果表明,该新型凝胶非常适合分析土壤中磷浓度的小范围变化。此外,该凝胶可用作替代传统 DGT 凝胶的方法,传统 DGT 凝胶中包含粉末状水铁矿,该凝胶在测定可利用磷酸盐方面具有更好的特性。

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