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城市污水SBR法短程生物脱氮的中试研究 被引量:8

A pilot scale study on short-cut biological nitrogen removal of municipal wastewater with SBR process
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摘要 采用处理量为60m3/d的SBR大型中试系统对实际城市污水的短程脱氮效果和稳定性进行研究.通过对传统时间控制模式和在线实时控制模式的对比分析可知,应用实时在线控制的分段进水交替缺氧/好氧运行模式,在达到相同深度脱氮效果的前提下,相对于传统运行方式的反应时间显著缩短,投加的外碳源量也缩减了25%.系统在保证平均总氮去除率98.2%的基础上,获得了较好的短程硝化效果,各好氧反应段的亚硝化率均在95%以上.精准的在线实时过程控制与交替缺氧/好氧的运行方式是短程生物脱氮实现及稳定的主要因素. The effect and stability of short-cut nitrogen removal of actual municipal wastewater were studied, adopting SBR technique large type scale system with treatment capacity of 60m^3/d. Through comparing analysis of traditional time control model and on-line actual time control model, the reaction time reduced greatly and the external carbon source could be saved more than 25% with real-time control, under the premise of reaching nitrogen removal effect of same depth. The system based on the pledged average total nitrogen removal rate of 98.2%, obtained good short-cut nitration effect, the subnitration of each aerobic reaction was all above 95%. The accurate on-line real time process control and alternative anoxic/aerobic operating mode were the main factors of the achievement and stabilization of the short-cut biological nitrogen removal.
出处 《中国环境科学》 EI CAS CSCD 北大核心 2007年第2期150-154,共5页 China Environmental Science
基金 国家"863"项目(2004AA601020) 北京市属市管高等学校人才强教"创新团队"资助项目
关键词 城市污水 SBR 短程生物脱氮 中试研究 municipal wastewater SBR short-cut biological nitrogen removal pilot scale experiment
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参考文献10

  • 1Kim Dong-Jin,Kim Sun-Hee.Effect of nitrite concentration on the distribution and competition of nitrite-oxidizing bacteria in nitratation reactor systems and their kinetic characteristics[J].Water Research,2006,40:887-894.
  • 2国家环境保护总局.水和废水监测分析方法[M].北京:中国环境科学出版社,2002,12.144-153.
  • 3Peng Yong-zhen,Gao Jing-feng,Wang Shu-ying,et al.Use pH and ORP as fuzzy control parameters of denitrification in SBR process[J].Wat.Sci.Tech.,2002,46(4/5):131-137.
  • 4曾薇,彭永臻,王淑莹,高景峰,李探微.以溶解氧浓度作为SBR法模糊控制参数[J].中国给水排水,2000,16(4):5-10. 被引量:58
  • 5高大文,彭永臻,王淑莹,梁红.利用ORP和pH控制豆制品废水的处理过程[J].哈尔滨工业大学学报,2003,35(6):647-650. 被引量:18
  • 6杨岸明,王淑莹,杨庆,郭建华,李剑峰.以pH和ORP作为脉冲SBR工艺的实时控制参数[J].环境污染治理技术与设备,2006,7(12):32-35. 被引量:11
  • 7郭建华,彭永臻,杨庆,杨岸明.脉冲SBR处理城市污水深度脱氮的工艺特性[J].中国环境科学,2007,27(1):62-66. 被引量:20
  • 8Cesar Mota,Melanie A Head,Jennifer A Ridenoure,et al.Effects of aeration cycles on nitrifying bacterial populations and nitrogen removal in intermittently aerated reactors[J].Applied and Environmental Microbiology,2005,71(12):8565-8572.
  • 9Turk O,Mavinic D S.Preliminary assessment of a shortcut in nitrogen removal from wastewater[J].Can.J.Civ.Eng.,1986,13,600-605.
  • 10Yoo Hyungseok,Ahn Kyu-hong,Lee Hyung-jib,et al.Nitrogen removal form synthetic wastewater by simultaneous nitrification and denitrification via nitrite in an intermittently-aerated reactor[J].Wat.Res.,1999,33(1):145-154.

二级参考文献27

  • 1高大文,彭永臻,王淑莹.交替好氧/缺氧短程硝化反硝化生物脱氮Ⅰ.方法实现与控制[J].环境科学学报,2004,24(5):761-768. 被引量:33
  • 2高大文,彭永臻,王淑莹.交替好氧/缺氧短程硝化反硝化生物脱氮Ⅱ.过程控制模式的确定[J].环境科学学报,2004,24(5):769-775. 被引量:13
  • 3彭永臻.SBR法的五大优点[J].中国给水排水,1993,9(2):29-31. 被引量:177
  • 4杨岸明,王淑莹,杨庆,郭建华,李剑峰.以pH和ORP作为脉冲SBR工艺的实时控制参数[J].环境污染治理技术与设备,2006,7(12):32-35. 被引量:11
  • 5国家环境保护局.水和废水监测分析方法[M].北京:中国环境科学出版社,1989.502-503.
  • 6KOCH F A, OLDHAM W K. Oxidation-reduction potential - a tool for monitoring, control and optimization of biological nutrient removal systems[J]. War Sci Tech, 1985.17:259 - 281.
  • 7CHARPENTIER J, FLORENTZ M, DAVID G. Oxidation-reduction potential (ORP) regulation: a way to optimize pollution removal and energy savings in the low load activated sludge process [ J ]. Wat Sci Tech, 1987,19 :645 - 655.
  • 8WAREHAM D G, HALL K J, MAVINIC D S. Real-time control of wastewater treatment systems using ORP .War Sci Tech, 1993,28 (11 - 12) :273 -282.
  • 9CAULET P, BUJON B, PHILIPPE J P, et al. Upgrading of wastewater treatment plants for nitrogen removal: industrial application of an automated aeration management based on ORP evolution analysis [ J ]. Wat Sci Tech,1998,37(9) :41 -47.
  • 10KIM H, HAO OJ. pH and oxidation-reduction potential control strategy for optimization of nitrogen removal in an alternating aerobie-anoxie system [ J ]. Water Environment Research, 2001,73( 1 ) :95 - 102.

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