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Effect of pH on reduction of nitrobenzene in groundwater by zero-valent iron

机译:pH值对零价铁还原地下水中硝基苯的影响

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The effects of different pH values on the reduction of nitrobenzene (NB or ArNO2) by zero-valent iron (ZVI) were studied in groundwater through batch experiments. The concentrations of NB and its reduction product aniline were determined during the process of reaction. The changes in the reduction rates for nitrobenzene, the quantities of aniline formed, and the reaction kinetics during the reduction by ZVI were examined and analyzed at different pH values. Experimental results showed that nitrobenzene in groundwater could be reductively degraded effectively by ZVI. The optimum pH for the reduction was found to be 3.0 within the tested pH range of 3.0 to 12.0.The pH value tended to increase gradually with the progress of reduction reaction. At various pH values, the reduction of nitrobenzene by ZVI followed pseudo-first-order kinetics, and the observed kinetic constant kobs increased with decreasing pH. Both the reduction rate of nitrobenzene and the formation of aniline decreased with increasing pH. According to UV spectral and GC-MS analyses, aniline was the final reaction product of NB when reduced by zero-valent iron.
机译:通过分批实验研究了不同pH值对地下水中零价铁(ZVI)还原硝基苯(NB或ArNO2)的影响。在反应过程中测定NB及其还原产物苯胺的浓度。在不同的pH值下,对硝基苯还原速率的变化,苯胺的生成量以及ZVI还原过程中的反应动力学进行了分析。实验结果表明,ZVI可以有效地降解地下水中的硝基苯。在3.0〜12.0的测试pH范围内,还原反应的最佳pH为3.0,随着还原反应的进行,pH值逐渐升高。在不同的pH值下,ZVI还原硝基苯遵循拟一级动力学,并且观察到的动力学常数随pH的降低而增加。硝基苯的还原率和苯胺的形成均随pH的升高而降低。根据UV光谱和GC-MS分析,当被零价铁还原时,苯胺是NB的最终反应产物。

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