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利用薄膜扩散梯度技术对溶解态无机砷进行形态分析:巯基丙基功能化硅胶对 AsIII 的选择性键合。

Speciation of dissolved inorganic arsenic by diffusive gradients in thin films: selective binding of AsIII by 3-mercaptopropyl-functionalized silica gel.

机构信息

Environmental Futures Centre, Griffith School of Environment, Griffith University, QLD, Australia.

出版信息

Anal Chem. 2011 Nov 1;83(21):8293-9. doi: 10.1021/ac202119t. Epub 2011 Oct 13.

DOI:10.1021/ac202119t
PMID:21967720
Abstract

A diffusive gradients in thin films (DGT) technique for selectively measuring As(III) utilizes commercially available 3-mercaptopropyl-functionalized silica gel. Deployment of the new technique alongside the Metsorb-DGT for total inorganic arsenic allows the calculation of As(III) directly and As(V) by difference. Uptake of As(III) by mercapto-silica was quantitative and elution with a mixture of 1 mol L(-1) HNO(3) and 0.01 mol L(-1) KIO(3) gave a recovery of 85.6 ± 1.7%. DGT validation experiments showed linear accumulation of As(III) over time (R(2) > 0.998). Accumulation was unaffected by varying ionic strength (0.0001-0.75 mol L(-1) NaNO(3)) and pH (3.5-8.5). Deployment of mercapto-silica DGT and Metsorb DGT in seawater spiked with As(III) and As(V) demonstrated the ability of the combined approach to accurately quantify both species in the presence of potential competing ions. Ferrihydrite DGT, which has been previously reported for the measurement of total inorganic arsenic, was evaluated in seawater and shown to underestimate both As(III) and As(V) at longer deployment times (72 h). Reproducibility of the new mercapto-silica DGT technique was good (relative standard deviations < 9%), and the average method detection limit was sufficiently low to allow quantification of ultratrace concentrations of As(III) (0.03 μg L(-1); 72 h deployment).

摘要

一种用于选择性测量 As(III) 的扩散梯度薄膜 (DGT) 技术利用商业上可获得的 3-巯基丙基官能化硅胶。新的 DGT 技术与 Metsorb-DGT 一起用于总无机砷,可直接计算 As(III)和通过差分计算 As(V)。巯基硅胶对 As(III)的吸收是定量的,用 1 mol L(-1) HNO(3)和 0.01 mol L(-1) KIO(3)的混合物洗脱可得到 85.6 ± 1.7%的回收率。DGT 验证实验表明 As(III)随时间的线性积累(R(2) > 0.998)。离子强度(0.0001-0.75 mol L(-1) NaNO(3))和 pH(3.5-8.5)的变化均不影响积累。在添加 As(III)和 As(V)的海水中部署巯基硅胶 DGT 和 Metsorb DGT,证明了这种组合方法能够在存在潜在竞争离子的情况下准确地定量两种物质。先前报道用于测量总无机砷的 Ferrihydrite DGT 在海水中进行了评估,并表明在较长的部署时间(72 h)内会低估 As(III)和 As(V)。新的巯基硅胶 DGT 技术的重现性良好(相对标准偏差 < 9%),平均方法检测限足够低,可用于定量测定痕量浓度的 As(III)(0.03 μg L(-1);72 h 部署)。

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