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臭氧-曝气生物滤池深度处理印染制革园区废水

Keywords: 印染制革废水,臭氧-曝气生物滤池,臭氧预处理,填料

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Abstract:

针对浙江省某印染制革园区污水处理厂二级生化出水,开展了处理规模36~120t/d的臭氧-曝气生物滤池中试研究,对臭氧预处理进行优化,考察了臭氧预处理优化后与不同填料BAF组合对污染物的去除情况。结果表明,当臭氧预处理条件为投加量25mg/L,三点投加且投加比为6:3:1,臭氧接触时间为42min时,处理效果较好且最经济;在此臭氧预处理条件下,臭氧-活性炭BAF的出水COD能稳定在50mg/L,色度稳定在5度,满足《城镇污水厂污染物排放标准》(GB18918-2002)中的一级B排放要求;臭氧-混合填料BAF的出水COD和色度也能基本达到一级B排放要求;而臭氧-陶粒BAF出水COD和色度都未能达到一级B排放要求。

References

[1]  杨德敏.制革废水处理技术的应用研究现状.皮革与化工, 2011, 28(1):34-41 Yang D. M. Current application studies of tannery wastewater treatment process. Leather and Chemical, 2011, 28(1):34-41(in Chinese)
[2]  郑广宏, 于蕾, 夏邦天, 等.臭氧技术处理印染废水研究进展.工业用水与废水, 2009, 40(2):6-10 Zheng G. H., Yu L., Xia B. T., et al. Research progress on treatment of printing and dyeing wastewater by ozone technology. Industrial Water and Wastewater, 2009, 40(2):6-10(in Chinese)
[3]  张捷, 朱慧, 叶财富.臭氧-生物活性炭处理效果的影响因素与工艺分析.给水排水, 2010, 36(2):9-12 Zhang J., Zhu H., Ye C. F. The influence factors and process study of ozone-biological activated carbon. Water and Wastewater Engineering, 2010, 36(2):9-12(in Chinese)
[4]  乔铁军, 安娜, 尤作亮, 等. 梅林水厂臭氧/生物活性炭工艺的运行效果.中国给水排水, 2006, 22(13):10-13 Qiao T. J., An N., You Z. L., et al. Performance of ozone and bilogical activated carbon process in Meilin water. China Water and Wastewater, 2006, 22(13):10-13(in Chinese)
[5]  王建平, 何元春. 南洲水厂处理工艺优化运行分析. 给水排水, 2006, 32(5):23-26 Wang J. P., He Y. C. Process analysis for optinization at Nanzhou waterwork in Guangzhou. Water and Wastewater Engineering, 2006, 32(5):23-26(in Chinese)
[6]  陈力行, 史惠祥, 沈涤清, 等. 造纸废水臭氧-曝气生物滤池深度处理技术研究.水处理技术, 2010, 36(8):88-93 Chen L.X., Shi H. X., Shen D. Q., et al. Advanced treatment technologies of paper mill wastewater by ozone—biological aerated filter process. Technology of Water Treatment, 2010, 36(8):88-93(in Chinese)
[7]  陈金海, 黎清金, 林庆溉, 等.应用臭氧-活性炭联用技术处理食品厂废水的探究.农产品加工学刊, 2008, 12(4):16-20 Chen J. H., Li Q. J., Lin Q. G., et al. Study ozone in conjuction with activated carbon on treating the food wastewater. Acadmic Periodical of Farm Products Processing, 2008, 12(4):16-20(in Chinese)
[8]  Rice R. G., Robson C. M., Miller G. W., et al.Uses of ozone in drinking water treatment. JAWWA, 1981, 73(1):44-57
[9]  王磊, 王旭东, 段文松, 等.臭氧氧化对城市二级处理水中溶解性有机物特性的影响及反应动力学分析.环境工程, 2005, 23(4):33-36 Wang L., Wang X. D., Duan W. S., et al. The effect of ozonization on dissolved organic matter in secondary effluent and analysis of reaction kinetics. Environmental Engineering, 2005, 23(4):33-36(in Chinese)
[10]  王树涛, 孙兴滨, 马军, 等. O3/BAF工艺系统中有机物生物降解数学模型. 环境工程学报, 2010, 4(3):561-565 Wang S. T., Sun X. B., Ma J., et al. Dynamic model of O3/BAF system during advanced treatment of secondary municipal wastewater effluent. Chinese Journal of Enviroment Engineering, 2010, 4(3):561-565(in Chinese)
[11]  黄年龙, 廖凤京.净水厂臭氧系统的设计与安装调试.给水排水, 2003, 29(2):3-6 Huang N. L., Miao F. J. Design installation and set up of ozone system for waterworks. Water and Wastewater Engineering, 2003, 29(2):3-6(in Chinese)
[12]  简丽, 王本洋. 臭氧氧化-曝气生物滤池处理含高浓度硝基苯类化合物废水. 化工环保, 2010, 30(5):408-411 Jian L., Wang B. Y. Treatment of wastewater containing high concentration nitrnbenzene compounds by ozone oxidation-biological aerated filter process. Environment Protection of Chemical Industry, 2010, 30(5):408-411(in Chinese)
[13]  顾晓扬, 汪晓军, 陈思莉, 等. 臭氧-曝气生物滤池对纺织洗水的回用处理. 中国给水排水, 2008, 24(7):42-44 Gu X. Y., Wang X. J., Chen S. L., et al. Reuse treatment of textile washing wastewater by ozone/biological aerated filter. China Water and Wastewater, 2008, 24(7):42-44(in Chinese)
[14]  国家环境保护总局.水和废水监测分析方法(第4版). 北京:中国环境科学出版社, 2002
[15]  朱晓辉.臭氧-生物活性炭深度处理东江水的应用.兰州:兰州交通大学硕士学位论文, 2007 Zhu X. H. The application of advanced treatment by O3-GAC of Dongjiang river. Lanzhou: Master\'s Degree Thesis of Lanzhou Jiaotong University, 2007(in Chinese)

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