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转鼓铁碳微电解法预处理液晶废水
引用本文:罗 晓,岳 琳,洪 纲,刘艳芳. 转鼓铁碳微电解法预处理液晶废水[J]. 化工环保, 2014, 34(1): 37-40. DOI: 1006-1878(2014)01-0037-04
作者姓名:罗 晓  岳 琳  洪 纲  刘艳芳
作者单位:1. 河北科技大学 环境科学与工程学院,河北 石家庄 050018;;2. 石家庄市环境监测中心,河北 石家庄 050011
基金项目:河北省高校重点学科建设项目。
摘    要:采用转鼓铁碳微电解法预处理液晶生产废水,优化了工艺参数,并进行了装置连续运行试验。结果表明:保持转鼓转速2 r/min,在废水pH=2.0、铁碳比(m(铸铁屑)∶m(活性炭))1∶1.5、填料装填率(填料体积与反应器有效容积之比)1∶10、HRT=3 h的优化工艺条件下,废水BOD5/COD由处理前的0.181提高到0.265;电解装置连续运行30 d,COD去除率稳定在40.1%~43.2%之间,且填料未出现板结现象。

关 键 词:转鼓  铁碳微电解  液晶  废水处理  
收稿时间:2013-08-19

Pretreatment of Liquid Crystal Wastewater by Rotary Drum Iron-carbon Microelectrolysis Process
Luo Xiao,Yue Lin,Hong Gang,Liu Yanfang. Pretreatment of Liquid Crystal Wastewater by Rotary Drum Iron-carbon Microelectrolysis Process[J]. Environmental Protection of Chemical Industry, 2014, 34(1): 37-40. DOI: 1006-1878(2014)01-0037-04
Authors:Luo Xiao  Yue Lin  Hong Gang  Liu Yanfang
Affiliation:1. College of Environmental Science and Engineering,Hebei University of Science and Technology,Shijiazhuang Hebei 050018,China;2.Shijiazhuang Environmental Monitoring Center,Shijiazhuang Hebei 050011,China
Abstract:Liquid crystal wastewater was pretreated by rotary drum iron-carbon microelectrolysis process. The process parameters were optimized,and the continuous running test was carried out. Under the optimum process conditions of drum rotation rate 2 r/min,wastewater pH 2.0,m(cast-iron scrap)∶m(activated carbon)=1∶1.5,packing loading ratio (ratio of packing volume to reactor effective volume) 1∶10 and HRT=3 h,BOD5/COD of the wastewater is increased from 0.181 to 0.265. During 30 d of continuous running,the COD removal rate is 40.1%-43.2%,and there is no phenomenon of hardening and agglutination in the packing layer.
Keywords:rotary drum  iron-carbon micro-electrolysis  liquid crystal  wastewater treatment  
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