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Graduated characterization method using a multi-well microplate for reducing reactivity of nanoscale zero valent iron materials

机译:使用多孔微孔板的渐变表征方法用于降低纳米级零价铁材料的反应性

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摘要

Even though nanoscale zero valent iron (nZVI) has been intensively studied for the treatment of a plethora of pollutants through reductive reaction, quantification of nZVI reactivity has not yet been standardized. Here, we adapted colorimetric assays for determining reductive activity of nZVI and its composites with other metals. The assay quantifies reduction products to avoid interfering reactions, such as sorption and volatilization. Three different reaction products, ammonium, phenol, and aniline, generated as the result of reduction of nitrate, p-halophenols, and nitrobenzene, respectively, could be quantified using the same reagent for all reactions. The colorimetric assays were further adapted to the 96-well microplate format, thus minimizing sample and reagent use, as well as lowering color development time to 2 h. The substrates showed graduated reactivity and thus reduction potency and kinetics of different materials and reaction mechanism was distinguished. The applicability was successfully proven by determining the reactivity of a commercial nZVI sample, and investigating the effect of nickel content on dehalogenation. Therefore, the suggested reactivity test with different compounds, combined with the use of a multi-well microplate based color assay, promises to be a useful and simple tool in various nZVI related research topics.
机译:尽管已经对通过还原反应处理大量污染物的纳米级零价铁(nZVI)进行了深入研究,但nZVI反应性的定量化尚未标准化。在这里,我们采用了比色法测定nZVI及其与其他金属的复合物的还原活性。该测定对还原产物进行定量以避免干扰反应,例如吸附和挥发。可以对所有反应使用相同的试剂对分别还原为硝酸盐,对卤苯酚和硝基苯的结果生成的三种不同的反应产物铵,苯酚和苯胺进行定量。比色测定法进一步适应了96孔微孔板的规格,从而最大程度地减少了样品和试剂的使用,并将显色时间缩短至2小时。底物显示出渐进的反应性,因此区分了不同材料的还原能力和动力学以及反应机理。通过确定商用nZVI样品的反应活性,并研究镍含量对脱卤的影响,成功证明了其适用性。因此,建议的不同化合物的反应性测试,结合使用基于多孔微板的颜色测定法,有望成为各种与nZVI相关的研究主题的有用和简单的工具。

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