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具有短好氧污泥龄的组合式A2/O-曝气生物滤池系统中氮磷的去除

Removal of nitrogen and phosphorus in a combined A2/O-BAF system with a short aerobic SRT.

作者信息

Ding Yong-wei, Wang Lin, Wang Bao-zhen, Wang Zheng

机构信息

School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China.

出版信息

J Environ Sci (China). 2006;18(6):1082-7. doi: 10.1016/s1001-0742(06)60043-0.

Abstract

A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A2/O-BAF) combined system was carried out to treat wastewater with lower C/N and C/P ratios. The A2/O process was operated in a short aerobic sludge retention time (SRT) for organic pollutants and phosphorus removal, and denitrification. The subsequent BAF process was mainly used for nitrification. The BAF effluent was partially returned to anoxic zone of the A2/O process to provide electron acceptors for denitrification and anoxic P uptake. This unique system formed an environment for reproducing the denitrifying phosphate-accumulating organisms (DPAOs). The ratio of DPAOs to phosphorus accumulating organisms (PAOs) could be maintained at 28% by optimizing the organic loads in the anaerobic zone and the nitrate loads into the anoxic zone in the A2/O process. The aerobic phosphorus over-uptake and discharge of excess activated sludge was the main mechanism of phosphorus removal in the combined system. The aerobic SRT of the A2/O process should meet the demands for the development of aerobic PAOs and the restraint on the nitrifiers growth, and the contact time in the aerobic zone of the A2/O process should be longer than 30 min, which ensured efficient phosphorus removal in the combined system. The adequate BAF effluent return rates should be controlled with 1-4 mg/L nitrate nitrogen in the anoxic zone effluent of A2/O process to achieve the optimal nitrogen and phosphorus removal efficiencies.

摘要

采用中试规模的厌氧/缺氧/好氧工艺-曝气生物滤池(A2/O-BAF)组合系统处理碳氮比和碳磷比低的废水。A2/O工艺在较短的好氧污泥停留时间(SRT)下运行,用于去除有机污染物、磷以及进行反硝化。后续的BAF工艺主要用于硝化。BAF出水部分回流至A2/O工艺的缺氧区,为反硝化和缺氧吸磷提供电子受体。这种独特的系统为反硝化聚磷菌(DPAO)的繁殖创造了环境。通过优化A2/O工艺厌氧区的有机负荷和进入缺氧区的硝酸盐负荷,DPAO与聚磷菌(PAO)的比例可维持在28%。好氧过量吸磷和排出剩余活性污泥是组合系统中除磷的主要机制。A2/O工艺的好氧SRT应满足好氧PAO生长的需求以及对硝化菌生长的抑制,且A2/O工艺好氧区的接触时间应大于30分钟,这确保了组合系统中高效的除磷效果。应将A2/O工艺缺氧区出水的硝酸盐氮控制在1 - 4mg/L,以控制适当的BAF出水回流率,从而实现最佳的氮磷去除效率。

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