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Optimization and mechanism study of C.I. Acid Blue 25 wastewater degradation by ozone/Fenton oxidation process: response surface methodology, intermediate products and degradation pathway

机译:C.I.的优化及机理研究臭氧/ Fenton氧化工艺降解酸性蓝25废水:响应面方法,中间产物和降解途径

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摘要

Degradation process of C.I. Acid Blue 25 by the combined ozone and Fenton (O-3/Fenton) system was investigated. The Box-Behnken design and response surface methodology were applied in designing the experiments for evaluating the interactive effects of the three most important operating variables. The results demonstrated that the optimal operating conditions were pH of 5.48, [H2O2]/[Fe2+] of 45.47, c(0) of 55.08 mg.L-1 and q(O-3) of 42.06 L.h(-1). Under conditions above, 96.67% decolorization rate of C.I. Acid Blue 25 could be obtained after 4 min reaction time. By validating the results through parallel experiment, the decolorization rate reached 96.39%, and the deviation with the model prediction was only 2.90%. In addition, the highest removal rate of chemical oxygen demand was higher than 85% after 20 min. Main reaction intermediate products involving p-benzoquinone, aniline, catechol, hydroquinone etc. were determined by analyses of ultraviolet-visible spectroscopy, Fourier transform infrared spectroscopy and gas chromatography/mass spectrometry (GC/MS). Based on the results of analyses above, the possible degradation pathways of C.I. Acid Blue 25 by O-3/Fenton system were proposed.
机译:C.I.的降解过程通过臭氧和Fenton(O-3 / Fenton)组合系统研究了酸性蓝25。 Box-Behnken设计和响应面方法被用于设计实验,以评估三个最重要的操作变量的交互作用。结果表明,最佳操作条件为:pH为5.48,[H2O2] / [Fe2 +]为45.47,c(0)为55.08 mg.L-1和q(O-3)为42.06 L.h(-1)。在上述条件下,C.I。的脱色率为96.67%。 4分钟的反应时间后可获得酸性蓝25。通过平行实验验证了结果,脱色率达到96.39%,与模型预测的偏差仅为2.90%。另外,20分钟后化学需氧量的最高去除率高于85%。通过紫外-可见光谱,傅里叶变换红外光谱和气相色谱/质谱(GC / MS)分析确定了涉及对苯醌,苯胺,邻苯二酚,对苯二酚等的主要反应中间产物。根据上面的分析结果,C.I。可能的降解途径。提出了O-3 / Fenton体系的酸性蓝25。

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