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异波折板水解酸化-A2O一体化反应器实验研究
引用本文:叶长兵,韩相奎,汤洁,毕冬,庄金鹏,王雷.异波折板水解酸化-A2O一体化反应器实验研究[J].环境污染治理技术与设备,2010(3):503-507.
作者姓名:叶长兵  韩相奎  汤洁  毕冬  庄金鹏  王雷
作者单位:[1]玉溪师范学院资源环境学院,玉溪653100 [2]吉林大学环境与资源学院,长春130026 [3]吉林建筑工程学院市政与环境工程学院,长春130021
基金项目:国家自然科学基金资助项目(50778080); 云南省教育厅项目(08Z0065); 云南省科技厅项目(2009CD099)
摘    要:设计了异波折板水解酸化-A2O一体化反应器,进行生活污水处理的实验研究。10个月的实验结果表明,系统的最佳水力停留时间(HRT)为8 h时,最适COD进水浓度为240-100mg/L,最佳混合液回流比(r)-污泥回流比(R)为250%-100%。控制反应器于以上运行参数下,25±2℃所对应的COD、TN和TP去除率分别为96.84%、67.55%和81.92%。当温度降至7℃时,其COD、TP和TN分别降至86.35%、50.25%和65.68%。基于实验分析结果,阐明了一体化反应器高效性的机理在于异波折板水解酸化段具有高效传质特性和A2O段具有复合式活性污泥-接触氧化好氧池的特点。

关 键 词:异波折板  水解酸化  A2O一体化反应器  传质

Integrated reactor of opposite folded plate hydrolysis and acidogenosis-A~2O for sewage treatment
Ye Changbing,Han Xiangkui Tang Jie Bi Dong Zhuang Jinpeng Wang Lei.Integrated reactor of opposite folded plate hydrolysis and acidogenosis-A~2O for sewage treatment[J].Techniques and Equipment for Environmental Pollution Control,2010(3):503-507.
Authors:Ye Changbing  Han Xiangkui Tang Jie Bi Dong Zhuang Jinpeng Wang Lei
Institution:1.College of Resources and Environment,Yuxi Normal University,Yuxi 653100,China;2.College of Environmental and Natural Resources,Jilin University,Changchun 130026,China;3.School of Municipal and Enviromental Engineering,Jilin Architectural and Civil Engineering Institute,Changchun 130021,China)
Abstract:Integrated reactor of opposite folded plate hydrolysis and acidification-A2O was designed to treat low strength sewage.The results of 10 months indicated that the optimal hydraulic retention time(HRT) was 8 h;the optimal influent COD concentration was 240~600 mg/L;the optimal mixed-liquor return ratio(r)-sludge return ratio(R) was 250%~100%.Under above conditions,the COD,TP and TN removal rates were 96.84%,67.55% and 81.92% at 25±2℃,respectively.When the temperature decreased to 7℃,the COD,TP and TN removal rates decreased to 86.35%,50.25% and 65.68% respectively.Based on the results of trial,the mechanisms of higher integrative reactor efficacy in treatment of low strength sewage were owed to high efficient mass-transfer of hydrolysis and acidification stage and the hybrid actived sludge-contact oxidation in aerobic tank at A2O stage.
Keywords:opposite folded plate  hydrolysis and acidification  A2O  integrated reactor  mass-transfer
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