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采用薄膜扩散梯度技术结合常规程序对沉积物中溶解反应性磷进行高分辨率二维测量。

High-resolution, two-dimensional measurement of dissolved reactive phosphorus in sediments using the diffusive gradients in thin films technique in combination with a routine procedure.

机构信息

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

Environ Sci Technol. 2011 Nov 15;45(22):9680-6. doi: 10.1021/es202785p. Epub 2011 Oct 26.

Abstract

Dissolved reactive phosphorus (DRP) is the most available P form in sediments and often directly controls phytoplankton blooms in aquatic systems. In this study, a novel procedure was developed for two-dimensional (2D) measurement of DRP in sediments at a spatial resolution of 0.45 mm using the diffusive gradients in thin films (DGT) technique with a revised high-capacity binding phase (Zr oxide gel). This procedure involves DGT uptake of P in sediments, 2D slicing of the binding gel on a 0.45 × 0.45-mm grid system, elution of P from each gel square with 1 M NaOH, and microcolorimetric determination of DRP in each eluted solution using 384-microwell plates. Measurements of DRP via this procedure were tested in homogeneous solutions and sediments and produced an acceptable error (<20% relative standard deviation) for the analysis once the accumulated mass of P in each gel square reached 1.2 μg cm(-2). This method was successfully applied to produce 2D images of the DRP distribution in sediments with and without the influence of tubificid worm bioturbation, revealing a much more pronounced and localized impact from tubificid worms than that found using a one-dimensional measurement of pore water DRP concentrations at 1-cm resolution.

摘要

溶解态活性磷(DRP)是沉积物中最具生物有效性的磷形态,通常直接控制着水生系统中浮游植物的爆发。在本研究中,我们开发了一种新的方法,使用带有改良高容量结合相(Zr 氧化物凝胶)的薄膜扩散梯度技术(DGT),以 0.45 毫米的空间分辨率对沉积物中的 DRP 进行二维(2D)测量。该方法包括 DGT 对沉积物中磷的吸收、在 0.45×0.45 毫米网格系统上对结合凝胶进行 2D 切片、用 1 M NaOH 从每个凝胶方块中洗脱磷、以及使用 384 微孔板对每个洗脱液中的 DRP 进行微量比色测定。通过该方法对 DRP 的测量在均匀溶液和沉积物中进行了测试,一旦每个凝胶方块中磷的累积量达到 1.2μg·cm-2,该分析的误差(<20%相对标准偏差)就可接受。该方法成功地应用于在有和没有颤蚓生物扰动影响的沉积物中生成 DRP 分布的 2D 图像,与使用 1 厘米分辨率的孔隙水 DRP 浓度的一维测量相比,颤蚓的影响更加显著和局部化。

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