期刊文献+

DO对SBR短程硝化系统的短期和长期影响 被引量:19

Short-term and Long-term Effects of DO on the Partial Nitrification Process in an SBR Reactor
在线阅读 下载PDF
导出
摘要 采用实际的生活污水,在SBR反应器内分别考察了溶解氧(DO)对短程硝化效果及污泥种群结构的短期和长期影响.结果表明,通过采用实时控制曝气时间,高ρDO(ρ(DO)=(3±0.5)mg/L)与低ρDO(ρ(DO)=(0.5±0.1)mg/L)条件下SBR系统的亚硝酸盐积累率均能达到90%以上,而低ρDO相对于高ρDO更利于提高系统的同步硝化反硝化(SND)效果,两者的平均同步硝化反硝化率(SND率)分别为45.5%和9.5%,低ρDO下最高SND率达86%.FISH的检测结果表明,实时控制模式下反应器内亚硝酸氧化菌(NOB)逐渐被淘洗,而氨氧化细菌(AOB)变为优势硝化菌群.在高ρDO运行末期,稳定的短程污泥中AOB和NOB的相对数量分别为8%~10%和不足0.5%;在低ρDO运行末期,AOB数量出现了微弱上升,增至10%~12%,而NOB进一步被淘汰,基本检测不出.可见,采用好氧曝气时间实时控制,能对短程硝化系统内污泥种群起到优化作用,且在高、低ρDO下均能实现稳定的短程硝化效果,而低ρDO更有利于系统内亚硝酸氧化菌(NOB)的淘洗、短程硝化率的提高以及系统SND效果的加强. The performance of partial nitrification via nitrite and microbial community structure were investigated and compared in an SBR by operating under different DO conditions. The reactor achieved stable partial nitrification with nitrite accumulation ratio of above 90% both at high and low DO concentrations by using the real-time aeration duration control. Compared with high DO(ρ(DO) = 3 ± 0. 5 mg /L) ,distinct simultaneous nitrification and denitrification(SND) via nitrite was carried out at low DO(ρ(DO) = 0. 5 ± 0. 1 mg /L) despite with lower ammonia oxidation rate. The average efficiency of SND at high DO and low DO concentrations was 9. 5% and 45. 4%,respectively. The maximum SND efficiency reached 86% under low DO concentration. Fluorescence in situ hybridization(FISH) analysis showed that AOB(ammonia oxidizing bacteria) became the dominant nitrifying bacteria and NOB(nitrite oxidizing bacteria) was gradually washed out from the reactor when stable nitrite accumulation was established. The sizes of AOB and NOB were 8 ~ 10% and lower than 0. 5% at the end of high DO operation period,respectively. After the operation under low DO,AOB gradually increased to 10 ~ 12% but NOB decreased into negligible level. It can be concluded that the real-time aeration duration control has positive effect on the sludge population optimization under both high and low DO conditions. Keeping DO at a low level is not only beneficial to the wash-out of NOB and the increasing of nitrite accumulation ratio,but also favorable to the enhancement of SND efficiency.
出处 《北京工业大学学报》 EI CAS CSCD 北大核心 2010年第8期1104-1110,共7页 Journal of Beijing University of Technology
基金 国家'八六三'计划项目资助(2006AA06Z319) 国家自然科学基金项目资助(50778005) 新加坡环境与水工业协会创新发展项目资助(EDBS07/1-53974092)
关键词 生物脱氮 短程硝化 同步硝化反硝化 污泥种群结构 低溶解氧 SBR biological nitrogen removal partial nitrification simultaneous nitrification and denitrification microbial community structure low DO SBR
作者简介 作者简介:王淑莹(1953-),黑龙江肇源人,女,教授,博士生导师.
  • 相关文献

参考文献14

  • 1ZHU G B, PENG Y Z, LIB K, et al. Biological removal of nitrogen from wastewater[J]. Rev Environ Contam Toxicol, 2008, 192 : 159-195.
  • 2YUAN Z, BLACKALL L. Sludge population optimisation: a new dimension for the control of biological wastewater treatment systems[ J ]. Water Research, 2002, 36 (2) : 482-490.
  • 3MUNCH E V, LANT P, KELLER J. Simultaneous nitrification and denitrification in bench-scale sequencing batch reactors [J]. Water Research, 1996, 30(2) : 277-284.
  • 4WANG J L, YANG N. Partial nitrification under limited dissolved oxygen conditions[ J]. Process Biochemistry, 2004, 39 (10) : 1223-1229.
  • 5BAE W, BAEK S, LEE Y. Optimal operational factors for nitrite accumulation in batch reactors[J]. Biodegradation, 2001, 12(5) : 359-366.
  • 6CIUDAD G, RUBILAR O, MUNOZ P, et al. Partial nitrification of high ammonia concentration wastewater as a part of a shortcut biological nitrogen removal[J]. Process Biochemistry, 2005, 40(5) : 1715-1719.
  • 7AMANN R I, KRUMHOLZ L, STAHL D A. Fluorescent-oligonucleotide probing of whole cells for determinative, phylogenetic and environmental studies in microbiology[ J]. Bacteriol, 1990, 172: 762-770.
  • 8杨庆,彭永臻,曾薇,杨岸明,Hiroyasu Satoh,Takashi Mino.城市污水SBR法短程生物脱氮系统硝化菌群的定量分析[J].北京工业大学学报,2007,33(8):843-848. 被引量:5
  • 9杨庆,王淑莹,杨岸明,郭建华,彭永臻.城市污水SBR法短程生物脱氮的中试研究[J].中国环境科学,2007,27(2):150-154. 被引量:8
  • 10HIBIYA K, TERADA A, TSUNEDA S, et al. Simultaneous nitrification and denitrification by controlling vertical and horizontal mieroenvironment in a membrane-aerated biofilm reactor[ J]. Biotechnology, 2003, 100: 23-32.

二级参考文献17

  • 1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
  • 2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
  • 3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.
  • 4Kim 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.
  • 5Peng 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.
  • 6Cesar 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.
  • 7Turk O,Mavinic D S.Preliminary assessment of a shortcut in nitrogen removal from wastewater[J].Can.J.Civ.Eng.,1986,13,600-605.
  • 8Yoo 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.
  • 9KIM Dong-jin,KIM Sun-hee.Effect of nitrite concentration on the distribution and competition of nitrite-oxidizing bacteria in nitratationreactor systems and their kinetic characteristics[J].Wat Res,2006(40):887-894.
  • 10ZENG Wei,PENG Yong-zhen,WANG Shu-ying.A two-stage SBR process for removal of organic substrate and nitrogen via nitrite-type nitrification-denitrification[J].Journal of Environmental Science and Health Part a,2004,39(8):2229-2239.

共引文献11

同被引文献250

引证文献19

二级引证文献134

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部