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Development of a spectrophotometric method for on-site analysis of peroxygens during in-situ chemical oxidation applications

机译:开发用于在原位化学氧化过程中现场分析过氧的分光光度法

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摘要

Activated peroxygens are frequently used as active agents in in-situ chemical oxidation (ISCO) contaminated site remediation applications, and fast and simple quantitative analysis of these species on site is necessary. In this work, the use of a spectrophotometric method based on classic iodometric titration is studied for quantitative analysis of S_2O_8~(2-) and H_2O_2. Instead of a back-titration step, the absorbance of the yellow iodide colour was measured at 352 nm in the presence of a bicarbonate buffer. A linear calibration curve was obtained from 0 to 0.1 mM for both S_2O_8 ~(2-) and H_2O_2. By dilution, the method can be used for all concentrations typically applied in the field. Concerning pH dependence, neutral pH levels caused no significant error whereas pH levels above 8 caused a 9% and 6% deviation from the theoretical peroxygen concentrations. Furthermore, the method showed little dependence on other matrix components, and absorbance was stable (<2% change) for more than a week. Overall, the method proved to be fast and simple, which are important features for a field method.
机译:在原位化学氧化(ISCO)污染的场地修复应用中,经常使用活化的过氧作为活性剂,因此需要对这些物质进行快速,简单的现场定量分析。在这项工作中,研究了基于经典碘量滴定法的分光光度法对S_2O_8〜(2-)和H_2O_2的定量分析。代替反滴定步骤,在碳酸氢盐缓冲液存在下在352 nm下测量黄色碘化物颜色的吸光度。对于S_2O_8〜(2-)和H_2O_2都获得了从0到0.1 mM的线性校准曲线。通过稀释,该方法可用于本领域通常应用的所有浓度。关于pH依赖性,中性pH水平没有引起明显的误差,而高于8的pH水平导致与理论过氧浓度的9%和6%的偏差。此外,该方法几乎不依赖于其他基质成分,并且吸光度稳定(变化<2%)超过一周。总的来说,该方法被证明是快速简便的,这对于现场方法是重要的。

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