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铁炭微电解深度处理焦化废水的研究
引用本文:赖鹏,赵华章,王超,倪晋仁.铁炭微电解深度处理焦化废水的研究[J].环境工程学报,2007,1(3):15-20.
作者姓名:赖鹏  赵华章  王超  倪晋仁
作者单位:北京大学环境工程系,北京,100871
摘    要:采用曝气铁炭微电解工艺对焦化废水进行了深度处理.结果表明,在活性炭、铁屑和NaCl投加量分别为10 g/L、30 g/L和200 mg/L的条件下反应240 min,出水COD去除率在30%~40%;酸性条件可以进一步提高COD去除率;微电解可以去除原生化出水中的难降解有机物,出水物质的分子量主要集中于2000 Da以下,以脂类和烃类化合物为主;出水的可生化性有了大幅度提高,BOD5/COD由0.08增加到0.53.实验结果表明,铁炭微电解是深度处理焦化废水的一种有效工艺.

关 键 词:铁炭微电解  焦化废水  深度处理  可生化性  曝气铁炭微电解工艺  深度处理  处理焦化废水  研究  process  coking  wastewater  advanced  treatment  实验  可生化性  烃类化合物  脂类  分子量  物质  难降解有机物  生化出水  酸性条件  去除率  反应  投加量  NaCl
文章编号:1673-9108(2007)03-0015-06
修稿时间:2006-07-112006-10-20

Study on advanced treatment of coking wastewater by iron carbon micro electrolysis process
Lai Peng,Zhao Huazhang,Wang Chao and Ni Jinren.Study on advanced treatment of coking wastewater by iron carbon micro electrolysis process[J].Techniques and Equipment for Environmental Pollution Control,2007,1(3):15-20.
Authors:Lai Peng  Zhao Huazhang  Wang Chao and Ni Jinren
Institution:Department of Environmental Engineering, Peking University, Beijing 100871,Department of Environmental Engineering, Peking University, Beijing 100871,Department of Environmental Engineering, Peking University, Beijing 100871 and Department of Environmental Engineering, Peking University, Beijing 100871
Abstract:Advanced treatment of coking wastewater by iron-carbon micro-electrolysis process with aeration was studied. It was found the COD removal efficiency reached 30% -40% with 10 g/L active carbon 30 g/L iron material and 200 mg/L sodium chloride after 240 min reaction. Low pH condition improved the COD removal efficiency. The micro-electrolysis process can remove the refractory organic compounds. The dominant contaminants in the effluent are ester and alkyl compounds, which have the low molecular weight less than 2000 Da. The process enhanced the biodegradability of the effluent evidently, for BOD5/COD ratio increased from 0.08 to 0. 53. Therefore, iron-carbon micro-electrolysis process is an effective means for advanced treatment of coking wastewater.
Keywords:iron-carbon micro-electrolysis  coking wastewater  advanced treatment  biodegradability
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