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增强型内电解-H2O2催化氧化处理染料废水研究
引用本文:宿程远,韦金尚,陈孟林,何星存,黄智.增强型内电解-H2O2催化氧化处理染料废水研究[J].水处理技术,2011,37(7).
作者姓名:宿程远  韦金尚  陈孟林  何星存  黄智
作者单位:1. 广西师范大学环境与资源学院,广西环境工程与保护评价重点实验室,广西桂林541004;哈尔滨工业大学市政环境学院,黑龙江哈尔滨100590
2. 广西师范大学环境与资源学院,广西环境工程与保护评价重点实验室,广西桂林541004
基金项目:广西教育厅科研项目(201010LX069); 广西自然科学基金(桂科自0640066); 广西师范大学青年骨干教师项目
摘    要:以活性艳红X-3B模拟染料废水为处理对象,研究了处理时间、pH、液固比等因素对镀铜铁屑增强型内电解和增强型内电解-H2O2催化氧化组合工艺处理效果的影响.结果表明,适宜工艺条件为:铁屑镀铜,硫酸铜的质量分数1%、镀铜时间2.5 min;增强型内电解,pH为5~6、废水体积与镀铜铁屑质量比2 mL"g-1、处理时间25 min,在此条件下,COD去除率和脱色率分别达到83%和97%;增强型内电解-H2O2催化氧化组合,废水体积与镀铜铁屑质量比2 mL·g-1、内电解处理时间为25 min、pH为4~6、H2O2加入量4 mL·L-1、氧化时间20 min,在此条件下,对活性艳红X-3B模拟染料废水脱色率和COD去除率分别达99%和90%.

关 键 词:镀铜铁屑  增强型内电解  活性艳红X-3B  双氧水  催化氧化

STUDY ON THE TREATMENT OF DYE WASTE WATER BY CATALYTIC OXIDATION OF INTENSIVE INNER ELECTROLYSIS AND HYDROGEN PEROXIDE OXIDATION ADDING
Su Chengyuan , Wei Jinshang , Chen Menglin , He Xingcun , Huang Zhi.STUDY ON THE TREATMENT OF DYE WASTE WATER BY CATALYTIC OXIDATION OF INTENSIVE INNER ELECTROLYSIS AND HYDROGEN PEROXIDE OXIDATION ADDING[J].Technology of Water Treatment,2011,37(7).
Authors:Su Chengyuan  Wei Jinshang  Chen Menglin  He Xingcun  Huang Zhi
Affiliation:Su Chengyuan1,2,Wei Jinshang1,Chen Menglin1,He Xingcun1,Huang Zhi1(1.School of Environment and Resources,Guangxi Normal University,The Guangxi Key Lab of Environmental Engineering Protection andAssessmen,Guilin 541004,China,2.School of Municiple and Environmental Engineering,Harbin Institute of Technology,Haerbin 150090,China)
Abstract:With the active red dye X-3B simulation as the wastewater treatment targets,it was investigated the factors on the intensive inner electrolysis and catalytic oxidation of intensive inner electrolysis and hydrogen peroxide oxidation adding,such as the processing time,the ratio of liquid and solid and pH.The results showed that the optimum conditions of iron copper process were the conditions of bluestone concentration was 1%,deposition time was 2.5 min;The proper reaction conditions of treatment by improved ...
Keywords:copper-plating iron filings  Enhanced within the electrolysis  reactive red dye X-3B  catalytic oxidation  
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