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三维电极法处理低浓度氨氮废水的研究

An Experimental Study of Three-dimensional Electrode to Treat Low Concentration Ammonia Nitrogen Wastewater

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【作者】 杨二奎邓觅万金保余晓玲吴永明

【Author】 YANG Er-kui;DENG Mi;WAN Jin-bao;YU Xiao-ling;WU Yong-ming;China Classification Society Certification Company;Research Institute of Poyang Lake,Jiangxi Academy of Sciences;Ministry of Education Key Laboratory of Poyang Lake Environment and Resources Utilization,School of Resources and Chemical Engineering Nanchang University;Department of Ecology and Environment of Jiangxi Province;

【机构】 中国船级社质量认证公司江西省科学院鄱阳湖研究中心南昌大学资源环境与化工学院鄱阳湖环境与资源利用教育部重点实验室江西省生态环境厅

【摘要】 养殖场污水处理系统厌氧/好氧阶段的出水,氨氮浓度较低、较难生物降解。针对此类废水中的特征污染物氨氮,研究通过单因素实验和响应面设计实验得到三维电极最优电解条件,即pH值5.0,电解质浓度0.20 mol/L,电压9.86 V,极板间距6.47 cm。在最优条件下处理氨氮浓度为140.00 mg/L的原水,出水氨氮浓度降至34.50 mg/L,低于《鄱阳湖生态经济区水污染物排放标准》(DB36/852-2015)中高效集约发展区氨氮限值。运用X射线衍射仪检测到,在烧结温度为200℃时,活性炭表面附着了α-MnO2、β-MnO2和Mn3O4。结合电化学反应特性,分析所构建的三维电极体系的反应机理。

【Abstract】 The effluent from the anaerobic/aerobic stage of the sewage treatment system has a low ammonia nitrogen concentration and it is difficult to biodegrade. Aming at this characteristic pollutant from this type of wastewater the study is obtained through single factor experiment and response surface design experiment. The optimal reaction parameters of the three-dimensional electrode are as follows:the waste water initial pH is 5.0;the voltage is 9.86 V;the plate spacing is 6.47 cm;the electrolyte concentration is 0.20 mol/L.The final effluent ammonia nitrogen concentration from 140.0 to 34.5 mg/L when it comes to treat the raw water by these parameters. It is lower than the Wastewater Discharge Standard of Poyang Lake Eco-economic District in Jiangxi Province(DB36/852-2015). X-ray diffraction method is used to detect that when the sintering temperature is 200 ℃,the surface of activated carbon is loaded with α-MnO2,β-MnO2 and Mn3O4. Then the reaction mechanism of three-dimensional electrode system is analyzed by electrochemical reaction characteristics.

【基金】 江西省重点研发计划项目(20192BBGL70045)
  • 【文献出处】 中国农村水利水电 ,China Rural Water and Hydropower , 编辑部邮箱 ,2021年04期
  • 【分类号】X703
  • 【被引频次】4
  • 【下载频次】276
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