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一种新型微电解材料处理实际印染废水的研究
引用本文:刘永红,邹磊,赵蕾,周孝德.一种新型微电解材料处理实际印染废水的研究[J].工业用水与废水,2011,42(4):60-63.
作者姓名:刘永红  邹磊  赵蕾  周孝德
作者单位:1. 西安工程大学环境与化工学院,西安710048;西安理工大学水力工程博士后流动站,西安710048
2. 西安工程大学环境与化工学院,西安,710048
3. 西安理工大学水力工程博士后流动站,西安,710048
基金项目:国家科技重大专项“水体污染控制与治理”(2009ZX07212-002-002); 陕西省科学技术研究发展计划(2008k07-14); 温州市科技计划项目(H20100004); 中国纺织工业协会科技指导性项目计划(2008032)
摘    要:采用一种新型微电解材料处理实际印染废水,探讨了影响处理效果的诸多因素,并通过正交试验确定了最佳处理条件.在曝气量0.75 L/min、反应时间2h、进水pH值为4、材料投加量为0.6kg/L时,印染废水的CODCr和色度去除率分别达到80%和92%以上.本法处理效果明显高于传统铁炭法,CODCr和色度去除率分别高出30...

关 键 词:印染废水  微电解  新型微电解材料

Printing and dyeing wastewater treatment by a novel micro-electrolytic material
LIU Yong-hong,ZOU Lei,ZHAO Lei,ZHOU Xiao-de.Printing and dyeing wastewater treatment by a novel micro-electrolytic material[J].Industrial Water & Wastewater,2011,42(4):60-63.
Authors:LIU Yong-hong  ZOU Lei  ZHAO Lei  ZHOU Xiao-de
Affiliation:LIU Yong-hong1,2,ZOU Lei1,ZHAO Lei1,ZHOU Xiao-de2
Abstract:A novel micro-electrolytic material was used to treat printing and dyeing wastewater,the factors affecting the treatment effect were discussed;and the optimal condition for the treatment was determined through the orthogonal test.The results showed that,when the aeration quantity was 0.75 L/min,the reaction time was 2 h,the influent pH value was 4,the material dosage was 0.6 kg/L,the removal rates of CODCr and colority in the printing and dyeing wastewater reached above 80% and 92% respectively.The comparis...
Keywords:printing and dyeing wastewater  micro-electrolysis  a novel micro-electrolytic material  
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