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基于凝胶的显色技术,用于在薄膜扩散梯度中对沉积物和土壤中不稳定磷进行亚毫米尺度成像。

Gel-based coloration technique for the submillimeter-scale imaging of labile phosphorus in sediments and soils with diffusive gradients in thin films.

机构信息

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

出版信息

Environ Sci Technol. 2013 Jul 16;47(14):7821-9. doi: 10.1021/es400192j. Epub 2013 Jun 26.

Abstract

We report a highly promising technique for the high-resolution imaging of labile phosphorus (P) in sediments and soils in combination with the diffusive gradients in thin films (DGT). This technique was based on the surface coloration of the Zr-oxide binding gel using the conventional molybdenum blue method following the DGT uptake of P to this gel. The accumulated mass of the P in the gel was then measured according to the grayscale intensity on the gel surface using computer-imaging densitometry. A pretreatment of the gel in hot water (85 °C) for 5 d was required to immobilize the phosphate and the formed blue complex in the gel during the color development. The optimal time required for a complete color development was determined to be 45 min. The appropriate volume of the coloring reagent added was 200 times of that of the gel. A calibration equation was established under the optimized conditions, based on which a quantitative measurement of P was obtained when the concentration of P in solutions ranged from 0.04 mg L(-1) to 4.1 mg L(-1) for a 24 h deployment of typical DGT devices at 25 °C. The suitability of the coloration technique was well demonstrated by the observation of small, discrete spots with elevated P concentrations in a sediment profile.

摘要

我们报告了一种在结合薄膜扩散梯度技术(DGT)的情况下,对沉积物和土壤中易变磷(P)进行高分辨率成像的极有前途的技术。该技术基于Zr-氧化物结合凝胶在 DGT 吸收 P 到该凝胶后的表面着色,使用传统的钼蓝法。然后根据凝胶表面的灰度强度,通过计算机成像密度计测量凝胶中 P 的累积质量。需要将凝胶在 85°C 的热水中预处理 5 天,以固定在凝胶中形成的磷酸盐和蓝色络合物在显色过程中。确定完全显色所需的最佳时间为 45 分钟。在优化条件下建立了校准方程,根据该方程,在 25°C 下典型 DGT 设备 24 小时部署时,溶液中 P 的浓度范围为 0.04 至 4.1mg/L 时,可对 P 进行定量测量。该着色技术的适用性通过在沉积物剖面中观察到具有升高的 P 浓度的小而离散的点得到了很好的证明。

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