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内循环对A2/O-曝气生物滤池工艺脱氮除磷特性影响
摘要点击 2984  全文点击 2367  投稿时间:2010-01-15  修订日期:2010-03-26
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中文关键词  A2/O-曝气生物滤池工艺  内回流比  深度脱氮除磷  反硝化除磷  去除率  低C/N
英文关键词  A2/O-BAF combined system  internal recycle ratio  deeply biological nitrogen and phosphorus removal  denitrifying phosphorus removal  removal efficiency  low C/N
作者单位
陈永志 北京工业大学北京市水质科学与水环境恢复工程重点试验室北京100124 
彭永臻 北京工业大学北京市水质科学与水环境恢复工程重点试验室北京100124 
王建华 北京工业大学北京市水质科学与水环境恢复工程重点试验室北京100124 
张良长 北京工业大学北京市水质科学与水环境恢复工程重点试验室北京100124 
中文摘要
      在原水温度为15℃和C/N为4.9的条件下,以实际生活污水为研究对象,重点考察了内回流比为100%、 200%、 300%和400%时小试规模A2/O-曝气生物滤池工艺脱氮除磷特性.结果表明,该生化系统可实现有机物、氮和磷的同步深度去除.在总HRT为8.0 h、SRT为15 d、污泥回流比为100%和MLSS为4.0 g·L-1的条件下,平均出水COD、TP和NH4-N浓度分别小于50.0、 0.5和1.0 mg·L-1;在平均进水TN浓度分别为70.9、 72.1、 70.6和73.3 mg·L-1的条件下,平均出水TN浓度分别为24.8、 16.5、 9.6和8.7 mg·L-1,TN去除率分别为65.0%、 77.1%、 86.4%和88.1%.内回流比与COD、TP和NH4-N的去除没有明显相关性,而TN去除率随内回流比的增大呈升高趋势,但升高幅度呈递减规律.缺氧反硝化能力和反硝化吸磷量亦随内回流比的增大而增大.序批试验表明,反硝化聚磷菌占总聚磷菌的40.5%.
英文摘要
      The behaviors of biological phosphorus (P) and nitrogen (N) removal in a lab-scaled anaerobic/anoxic/oxic-biological aerated filter (A2/O-BAF) combined system were investigated during the treatment of real domestic wastewater with the temperature at 15℃, the C/N ratio of 4.9 and internal recycle ratio of 100% ,200%,300%and 400%. Experimental results clearly showed that COD,N and P can be simultaneously deeply removed in this combined system.When the total HRT was 8.0 h,SRT was 15 d,sludge recycle ratio was 100% and MLSS was 4.0 mg·L-1, the concentrations of COD, total phosphorus (TP) and ammonia nitrogen could be reached to less than 50.0, 0.5 and 1.0 mg·L-1 in the effluent, respectively. The concentrations of total nitrogen (TN) could be reduced from 70.9, 72.1, 70.6 and 73.3 mg·L-1 in the raw wastewater to that of 24.8, 16.5,9.6 and 8.7 mg·L-1 in the effluent ,respectively.The removal efficiencies of TN were 65.0%, 77.1%, 86.4% and 88.1%, respectively. There was no distinct relationship between the internal recycle ratio and the removal efficiencies of COD, TP and ammonia nitrogen.However,the removal efficiencies of TN increased with the increasing of the internal recycle ratio,the rising rate was descending.Both the capacity of denitrifying and phosphorus removal in anoxic zone increased simultaneously with the increasing of the internal recycle ratio. Batch tests indicated that the population of denitrifying polyphosphate-accumulating organisms(DPAOs)was up to 40.5% of the total phosphate-accumulating organisms(PAOs).

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