首页> 外文期刊>Environmental toxicology and chemistry >MEASURING SULFIDE ACCUMULATION IN DIFFUSIVE GRADIENTS IN THIN FILMS BY MEANS OF PURGE AND TRAP FOLLOWED BY ION-SELECTIVE ELECTRODE
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MEASURING SULFIDE ACCUMULATION IN DIFFUSIVE GRADIENTS IN THIN FILMS BY MEANS OF PURGE AND TRAP FOLLOWED BY ION-SELECTIVE ELECTRODE

机译:离子选择电极吹扫捕集法测定薄膜中扩散梯度中的硫化物积累。

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摘要

A procedure for measuring in situ sulfide concentrations by coupling diffusive gradients in thin films (DGT) to solid-state ion-selective electrodes (ISE) is described and evaluated. Laboratory tests were performed to evaluate the coupling of these techniques, and these results were compared to the previously used methods of computer imaging densitometry (CID) and methylene blue. An average elution efficiency of 89%, as detected by ISE, was determined for a series of solutions containing amounts of sulfide ranging from 0.009 to 2.50 μmol. The validity of the standard mass-transfer equation for sulfide accumulation by DGT probes and subsequent detection by ISE was tested by measuring the mass of sulfide collected over time and with respect to varying diffusive gel thicknesses. Regressions of the sulfide mass accumulation versus the independent variables of time and inverse diffusive thickness proved to be linear. The use of DGT coupled to ISE provides a preconcentration method for sulfide that improves the detection limit (DL) over other techniques. This alternative method provides quantitative measurements of DGT-captured sulfide from solutions with a detection limit of at least 0.1 μmol/L for a 24-h deployment. The DGT technique also provides potential advantages in understanding sulfide speciation over existing methods.
机译:描述和评估了通过将薄膜(DGT)中的扩散梯度耦合到固态离子选择电极(ISE)来测量原位硫化物浓度的过程。进行了实验室测试以评估这些技术的耦合,并将这些结果与先前使用的计算机成像光密度法(CID)和亚甲基蓝的方法进行了比较。通过ISE检测,对于一系列硫化物含量范围为0.009至2.50μmol的溶液,平均洗脱效率为89%。通过测量随时间推移以及相对于不同扩散凝胶厚度测量的硫化物质量,测试了DGT探针对硫化物积累以及随后通过ISE检测的标准传质方程的有效性。硫化物质量积累相对于时间和逆扩散厚度的自变量的回归被证明是线性的。 DGT与ISE结合使用提供了一种硫化物预富集方法,与其他技术相比,该方法可提高检测限(DL)。这种替代方法可对溶液中DGT捕获的硫化物进行定量测量,对于24小时部署,检测限至少为0.1μmol/ L。与现有方法相比,DGT技术还具有潜在的优势,可帮助您了解硫化物的形态。

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