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基于二氧化钛的吸附剂测定无机砷和硒(IV)的新薄膜扩散梯度技术。

New diffusive gradients in a thin film technique for measuring inorganic arsenic and selenium(IV) using a titanium dioxide based adsorbent.

机构信息

Environmental Futures Centre, Griffith University, Gold Coast campus, Queensland 4222, Australia.

出版信息

Anal Chem. 2010 Sep 1;82(17):7401-7. doi: 10.1021/ac101543p.

Abstract

A new diffusive gradients in a thin film (DGT) technique, using a titanium dioxide based adsorbent (Metsorb), has been developed and evaluated for the determination of dissolved inorganic arsenic and selenium. As(III), As(V), and Se(IV) were found to be quantitatively accumulated by the adsorbent (uptake efficiencies of 96.5-100%) and eluted in 1 M NaOH (elution efficiencies of 81.2%, 75.2%, and 88.7%). Se(VI) was not quantitatively accumulated by the adsorbent (<20%). Laboratory DGT validation experiments gave linear mass uptake over time (R(2) >or= 0.998) for As(III), As(V), and Se(IV). Consistent uptake occurred over pH (3.5-8.5) and ionic strength (0.0001-0.75 mol L(-1) NaNO(3)) ranges typical of natural waters, including seawater. Field deployments of DGT probes with various diffusive layer thicknesses confirmed the use of the technique in situ, allowing calculation of the diffusive boundary layers and an accurate measurement of inorganic arsenic. Reproducibility of the technique in field deployments was good (relative standard deviation <8%). Limits of detection (4 day deployments) were 0.01 microg L(-1) for inorganic arsenic and 0.05 microg L(-1) for Se(IV). The results of this study confirmed that DGT with Metsorb was a reliable and robust method for the measurement of inorganic arsenic and the selective measurement of Se(IV) within useful limits of accuracy.

摘要

一种基于二氧化钛的新型扩散梯度薄膜(DGT)技术(Metsorb)已被开发并用于测定溶解态无机砷和硒。研究发现,As(III)、As(V)和 Se(IV)可被吸附剂定量吸附(吸附效率为 96.5-100%),并可在 1 M NaOH 中洗脱(洗脱效率为 81.2%、75.2%和 88.7%)。Se(VI)则不能被吸附剂定量吸附(<20%)。实验室 DGT 验证实验表明,As(III)、As(V)和 Se(IV)的质量随时间呈线性增加(R(2)≥0.998)。在 pH(3.5-8.5)和离子强度(0.0001-0.75 mol L(-1) NaNO(3))范围内,包括海水在内的天然水中均能持续进行吸附。不同扩散层厚度的 DGT 探针的现场部署证实了该技术的原位应用,可计算扩散边界层并准确测量无机砷。该技术在现场部署中的重现性良好(相对标准偏差<8%)。检测限(4 天的测量时间)为 0.01μg L(-1)的无机砷和 0.05μg L(-1)的 Se(IV)。本研究结果证实,DGT 结合 Metsorb 是一种可靠且稳健的方法,可用于测定无机砷,并在准确测量范围内选择性测定 Se(IV)。

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