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Oxidative decomposition of p-nitroaniline in water by solar photo-Fenton advanced oxidation process

机译:太阳光-Fenton高级氧化法对水中的对硝基苯胺氧化分解

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The degradation of p-nitroaniline (PNA) in water by solar photo-Fenton advanced oxidation process was investigated in this study. The effects of different reaction parameters including pH value of solutions, dosages of hydrogen peroxide and ferrous ion, initial PNA concentration and temperature on the degradation of PNA have been studied. The optimum conditions for the degradation of PNA in water were considered to be: the pH value at 3.0, 10 mmol L~(-1) H_2O_2, 0.05 mmol L~(-1) Fe~(2+), 0.072-0.217 mmol L~(-1) PNA and temperature at 20℃. Under the optimum conditions, the degradation efficiencies of PNA were more than 98% within 30 min reaction. The degradation characteristic of PNA showed that the conjugated π systems of the aromatic ring in PNA molecules were effectively destructed. The experimental results indicated solar photo-Fenton process has more advantages compared with classical Fenton process, such as higher oxidation power, wider working pH range, lower ferrous ion usage, etc. Furthermore, the present study showed the potential use of solar photo-Fenton process for PNA containing wastewater treatment.
机译:研究了太阳光-Fenton高级氧化法对水中对硝基苯胺(PNA)的降解。研究了溶液的pH值,过氧化氢和亚铁离子的用量,初始PNA浓度和温度等不同反应参数对PNA降解的影响。认为PNA在水中的最佳降解条件为:pH值为3.0、10 mmol L〜(-1)H_2O_2、0.05 mmol L〜(-1)Fe〜(2 +),0.072-0.217 mmol L〜(-1)PNA,温度20℃。在最佳条件下,反应30min内PNA的降解效率大于98%。 PNA的降解特性表明,PNA分子中芳环的共轭π体系被有效破坏。实验结果表明,与传统的Fenton工艺相比,太阳Fenton工艺具有更多的优势,例如具有更高的氧化能力,更宽的工作pH范围,更低的亚铁离子用量等。此外,本研究还表明了太阳能Fenton的潜在用途。含PNA废水处理的过程。

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