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微电解-Fenton氧化技术处理草甘膦废水的研究
引用本文:李祥,豆静茹,马倩鹤,李宁,黄尚顺,李华峰.微电解-Fenton氧化技术处理草甘膦废水的研究[J].工业水处理,2016(11):57-60.
作者姓名:李祥  豆静茹  马倩鹤  李宁  黄尚顺  李华峰
作者单位:1. 陕西科技大学化学与化工学院,陕西西安,710021;2. 北京工商大学,北京,102488;3. 广西化工研究院,广西南宁,530001
基金项目:广西自然科学基金(2015GXNSFBA139036,2011GXNSFA018047);西安市未央区科技项目(201411)
摘    要:根据草甘膦的性质及其产生废水的特性,提出了草甘膦废水的适合处理的技术。采用正交实验法,研究了微电解-Fenton氧化技术对草甘膦废水中COD、甲醛含量的影响,发现在最佳处理条件下草甘膦废水的COD、甲醛去除率可达到92.1%、95.3%,达到国家《污水综合排放标准》(GB 8978—1996)工业二类废水排放标准,减轻了污水处理企业的压力。

关 键 词:微电解  Fenton氧化技术  草甘膦废水

Research on micro electrolysis-Fenton oxidation technology for the treatment of glyphosate wastewater
Abstract:According to the characteristics of glyphosate and the wastewater it produced,an appropriate technology for the treatment of glyphosate wastewater has been put forward. By orthogonal test method ,the influences of micro electrolysis-Fenton oxidation technology on the contents of COD and formaldehyde in glyphosate wastewater are studied. It is found that under optimum treatment conditions ,the removing rates of COD and formaldehyde in glyphosate wastewater are 92.1%and 95.3%,respectively,reaching the industrial second class wastewater discharge standard specified in the national Integrated Wastewater Discharge Standard (GB 8978—1996) and reducing the stress in wastewater treatment enterprises.
Keywords:micro electrolysis  Fenton oxidation technology  glyphosate wastewater
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