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Selective removal of nitroaromatic compounds from wastewater in an integrated zero valent iron (ZVI) reduction and ZVI/H2O2 oxidation process

机译:在集成的零价铁(ZVI)还原和ZVI / H2O2氧化过程中选择性去除废水中的硝基芳族化合物

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In this study, an integrated system comprised of zero-valent iron (ZVI) reduction and ZVI-based Fenton oxidation processes (ZVI-ZVI/H2O2) was applied for the selective removal of nitroaromatic compounds (NACs) from 2,4-dinitroanisole (DNAN) producing wastewater. For the ZVI reduction process, at a hydraulic retention time (HRT) of 6 h and neutral pH of 7.2, removal efficiencies of 2,4-dinitroanisole (DNAN), 2,4-dinitrophenol (DNP) and 2,4-dinitrochlorobenzene (DNCB) were as high as 81.3 +/- 3.6%, 80.6 +/- 1.8% and 90.9 +/- 3.5%, respectively, demonstrating the excellent performance of ZVI. For the ZVI/H2O2 oxidation process, the optimal pH and H2O2 dosage were found to be 3.0 and 100 mmol L-1, respectively. Under these optimal conditions, NACs and their degradation intermediates could be removed selectively and effectively in the coupled ZVI reduction and ZVI/H2O2 oxidation process, as was indicated by the low UV254 value of 0.104 +/- 0.003 and the low TOC removal efficiency of 32.4 +/- 0.7% in the effluent. Ferrous ions could be generated in situ through the corrosion of the metal iron in both the ZVI reduction process and the ZVI/H2O2 oxidation process, giving rise to a potent Fenton-type reaction. In addition, the enhanced Fenton reaction with the aid of reaction between Fe-0 and Fe3+ was probably due to the presence of Fe-0 in the ZVI/H2O2 oxidation process, which promoted the utilization efficiency of the Fenton catalyst, i.e., Fe2+. Compared to the sequential ZVI reduction and homogeneous Fenton oxidation process (ZVI-Fe2+/H2O2), the low consumption of iron shavings, the reduced H2O2 consumption and the low yield of ferric sludge made the integrated ZVI-ZVI/H2O2 process promising for the treatment of NAC containing wastewater.
机译:在这项研究中,将零价铁(ZVI)还原和基于ZVI的Fenton氧化过程(ZVI-ZVI / H2O2)组成的集成系统用于从2,4-二硝基苯甲醚中选择性去除硝基芳族化合物(NAC)( DNAN)生产废水。对于ZVI还原过程,在6 h的水力停留时间(HRT)和7.2的中性pH下,2,4-二硝基苯甲醚(DNAN),2,4-二硝基苯酚(DNP)和2,4-二硝基氯苯( DNCB)分别高达81.3 +/- 3.6%,80.6 +/- 1.8%和90.9 +/- 3.5%,证明了ZVI的出色性能。对于ZVI / H2O2氧化过程,发现最佳pH和H2O2剂量分别为3.0和100 mmol L-1。在这些最佳条件下,可以通过耦合的ZVI还原和ZVI / H2O2氧化过程选择性而有效地去除NAC及其降解中间体,这可通过低UV254值为0.104 +/- 0.003和低TOC去除效率32.4来说明。废水中的+/- 0.7%。在ZVI还原过程和ZVI / H2O2氧化过程中,金属铁的腐蚀都会原位产生亚铁离子,从而产生有效的Fenton型反应。另外,借助于Fe-0和Fe3 +之间的反应增强的芬顿反应可能是由于在ZVI / H2O2氧化过程中存在Fe-0,这提高了芬顿催化剂即Fe2 +的利用效率。与顺序ZVI还原和均相Fenton氧化工艺(ZVI-Fe2 + / H2O2)相比,铁屑的消耗量低,H2O2消耗量减少以及铁渣的产率低,使得ZVI-ZVI / H2O2集成工艺有望用于处理含有NAC的废水。

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