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电芬顿法降解含酚类有机废水

Degradation of phenolic organic wastewater with electro-Fenton method

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【作者】 徐甲慧霍守亮张靖天钱光人许云峰王彬

【Author】 XU Jiahui;HUO Shouliang;ZHANG Jingtian;QIAN Guangren;XU Yunfeng;WANG Bin;School of Environmental and Chemical Engineering, Shanghai University;Chinese Research Academy of Environmental Sciences;

【通讯作者】 王彬;

【机构】 上海大学环境与化学工程学院中国环境科学研究院

【摘要】 以石墨电极为阴极, Ti/IrO2-RuO2电极为阳极,铁碳粒子和纳米Fe3O4为非均相催化剂,采用电芬顿法处理苯酚废水及煤化工废水.以铁碳粒子为催化剂的三维电极电芬顿(3D electrode/electro-Fenton, 3D-EF)工艺能在1 h内使苯酚去除率达到100%, 5 h内化学需氧量(chemical oxygen demand, COD)去除率达到80%,明显优于以纳米Fe3O4为催化剂的异相催化电芬顿(heterogeneous catalytic electro-Fenton, HEF)工艺的处理效果.在3D-EF工艺对煤化工实际废水的处理过程中,通过单因素的探讨,得到如下的最优反应条件:pH值为3,粒子粒径为2 mm<d <5 mm,粒子投加量为10 g(33 g/L),初始进水COD值浓度为1 400 mg/L.在此条件下反应5 h, 3D-EF工艺对煤化工废水的处理效果最好, COD去除率接近40%, B/C提高至0.44.利用紫外光谱、三维荧光光谱及傅里叶红外光谱对降解前后的溶解性有机物变化进行了分析.结果表明,煤化工废水中单环类芳香族化合物的降解效果很好,废水中COD的去除主要来自对酚类化合物的降解.

【Abstract】 In this work, an electro-Fenton system with a graphite cathode, a Ti/IrO2-RuO2 anode, iron-carbon particles and nano-Fe3O4 heterogeneous catalysts was developed for phenol wastewater and coal liquefaction wastewater. In a 3 D electrode/electro-Fenton(3 D-EF) reactor coupled with iron-carbon particle catalysts, the removal rate of phenol reached 100% in 1 h, and the removal rate of chemical oxygen demand(COD) reached 80%in 5 h. That was higher than those in heterogeneous catalytic electro-Fenton(HEF) coupled with nano-Fe3O4 catalysts. The results indicated that the optimum reaction conditions were controlled as follows: initial pH=3, 2 mm< d <5 mm particle size, 10 g(33 g/L)particle dosage, and 1 400 mg/L initial COD concentration. After 5 h of the reaction, high treatment efficiency of coal liquefaction wastewater was obtainedin the 3 D-EF system.The removal efficiency of COD was approximately 40%, and B/C was 0.44. UV spectrum,3 D fluorescence spectroscopy and Fourier transform infrared spectroscopy were used to investigate variation of dissolved organic matters before and after degradation process. The results show that single ring aromatic compounds in coal liquefaction wastewater is easy to degrade, and removal of COD in wastewater are mainly from degradation of phenolic compounds.

【基金】 上海市教委科研创新基金资助项目(13YZ001)
  • 【文献出处】 上海大学学报(自然科学版) ,Journal of Shanghai University(Natural Science Edition) , 编辑部邮箱 ,2019年04期
  • 【分类号】X703
  • 【被引频次】15
  • 【下载频次】994
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