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生物脱氮除磷系统内微生物种群优化的研究进展

, PP. 31-37

Keywords: 微生物,种群优化,活性污泥,脱氮除磷

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Abstract:

微生物在活性污泥污水处理系统中具有至关重要的作用,活性污泥内微生物种群的组成决定了系统污染物的去除性能。本文针对污水生物脱氮除磷系统中微生物的种群优化进行了概述,主要介绍了AOB和NOB、PAOs和DPAOs以及GAOs和PAOs的相互关系,并分析了其种群优化的调控途径。

References

[1]  邓钦,廖柏寒.氮磷比对一体化反硝化同时脱氮除磷的影响\[J\].水处理技术,2010,36(6):29-33.
[2]  曹桂萍.反硝化聚磷菌富集条件的研究\[J\].中国给水排水,2010,26(13):60-63.
[3]  Zeng,R.J.,M.C.M.van Loosdrecht,Z.Yuan,et al.Metabolic model for glycogenaccumulating organisms in anaerobic/aerobic activated sludge systems\[J\].Biotechnol.Bioeng.,2003,81(1):92-105.
[4]  He,S.,A.Z.Gu,K.D.McMahon.Finescale differences between Accumulibacterlike bacteria in enhanced biological phosphorus removal activated sludge\[J\].Water Ressearch,2006,54(1):111-117.
[5]  Chen,Y.,A.A.Randall,T.McCue.The efficiency of enhanced biologicalphosphorus removal from real wastewater affected by different ratios of acetic to propionic acid\[J\].Water Research,2004,38(1):27-36.
[6]  Oehmen,A.,M.T.Vives.The effect of pH on the competition between polyphosphate accumulating organisms and glycogen accumulating organisms\[J\].Water Research,2005,39(15):3 727-3 737.
[7]  Lu,H.,A.Oehmen,B.Virdis,et al.Obtaining highly enriched cultures of Candidatus Accumulibacter phosphates through alternating carbon sources\[J\].Water Research.,2006,40:3 838-3 848.
[8]  Meyer,R.L.,A.M.Saunders,L.L.Blackall.Putative glycogenaccumulating organisms belonging to the Alphaproteobacteria identified through rRNAbased stable isotope probing\[J\].Microbiology,2006,152(2):419-429.
[9]  Jobbagy,A.,B.Literathy,M.T.Wong,et al.Proliferation of glycogen accumulating organisms induced by Fe(Ⅲ)dosing in a domestic wastewater treatment plant\[J\].Water Sci.Technol.,2006,54(1):101-109.
[10]  Saito,T.,D.Brdjanovic,M.C.M.van Loosdrecht.Effect of nitrite on phosphate uptake by phosphate accumulating organisms\[J\].Water Research,2004,38(17):3 760-3 768.
[11]  Oehmen,A.,A.M.Saunders,M.T.Vives,et al.Competition between polyphosphate and glycogen accumulating organisms in enhanced biological phosphorus removal systems with acetate and propionate as carbon sources\[J\].Biotechnol,2006,123(1):22-32.
[12]  \[47\]Smolders,G.J.F.,J.Vandermeij,M.C.M.van Loosdrecht,et al.Model of the anaerobic metabolism of the biological phosphorus removal process: Stoichiometry and Ph influence\[J\].Biotechnology and Bioengineering,1994,43(6):461-470.
[13]  \[48\]Filipe,C.D.M.,G.T.Daigger,C.P.L.Grady.pH as a key factor in the competition between glycogenaccumulating organisms and phosphorusaccumulating organisms\[J\].Water Environment Research,2001,73(2):223-232.
[14]  徐伟锋,顾国维.生物除磷系统中聚磷菌与聚糖菌代谢模型比较\[J\].中国给水排水,2006,22(14):5-9.
[15]  \[50\]Seviour,R.J.,T.Mino,M.Onuki.Themicrobiology of biological phosphorus removal in activated sludge systems\[J\].Fems Microbiology Reviews,2003,1(27):99-127.
[16]  Carlos,M.L.V.,S.Young,M.H.Christine,et al.Shortterm temperature effects on the anaerobic metabolism of glycogen accumulating organisms\[J\].Biotechnol. Bioeng.,2007,97(3):483-495.
[17]  Whang,L.M.,J.K.Park.Competition between polyphosphateand glycogenaccumulating organisms in enhancedbiologicalphosphorusremoval systems:Effect of temperature and sludge age\[J\].Water Environment Research,2006,78(1):4-11.
[18]  ZK(#〗Yuan,Z.G.,A.Oehmen,Y.Z.Peng.Sludge population optimisation in biological nutrient removal wastewater treatment systems through online process control:A review\[J\].Rev.Environ.Sci.Biotechnol.,2008,7:243-254..
[19]  王琳,王宝贞.水污染治理新技术\[M\].北京:科学教育出版社,2004.
[20]  Yuan,Z.G.,L.L.Blackall.Sludge population optimisation:A new dimension for the control of biological wastewater treatment systems\[J\].Water Research,2002,36(2):482-490.
[21]  朱洪山,吕斌.短程硝化反硝化理论及工艺研究进展\[J\].山西建筑,2010,36(11):180-181.
[22]  刘海滨,李亚峰,田西满.短程硝化控制条件研究现状与应用分析\[J\].工业安全与环保,2009,35,(7):20-22.
[23]  Khin,T.,A.P.Annachhatre.Novel microbial nitrogen removal processes\[J\].Biotechnology Advances,2004,22(7):519-532.
[24]  Hunik,J.H.Engineering Aspects of Nitrification with Immobilised Cells\[D\].The Netherlands:Wageningen Agricultural University,1993.
[25]  雒怀庆,胡勇有.影响亚硝化过程和硝化过程因素的动力学模型分析\[J\].环境科学学报,2006,26(4):561-566.
[26]  张巍,赵军,郎咸明,等.硝化细菌在不同温度下对氮素的去除效能研究\[J\].环境科学与管理,2010,35(6):83-87.
[27]  \[10\]高大文,彭永臻,王淑莹.短程硝化生物脱氮工艺的稳定性\[J\].环境科学,2005,26(1),63-67.
[28]  Laanbroek,H.J.,S.Gerards.Competition for limiting amounts of oxygen between Nitrosomonas europaea and Nitrobacter winogradskyi grown in mixed continuous cultures\[J\].Arch Microbiol,1993,159(5):453-459.
[29]  郑赞永,胡龙兴.低溶解氧下生物膜反应器的亚硝化研究\[J\].环境科学与技术,2006,29(9):29-31.
[30]  李亚峰,刘海滨.高质量浓度污泥SBR短程硝化分阶段培养快速启动研究\[J\].沈阳建筑大学学报(自然科学版),2009,25(4):526-530.
[31]  Zeng,W.,Y.Zhang,L.Li,et al.Control and optimization of nitrifying communities for nitritation from domestic wastewater at room temperatures\[J\].Enzyme and Microbial Technology,2009,45:226-232.
[32]  Park,H.D.,D.R.Noguera.Evaluating the effect of dissolved oxygen on ammoniaoxidizing bacterial communities in activated sludge\[J\].Water Research,2004,38:3 275-3 286.
[33]  王淑莹,黄惠珺,郭建华,等.DO对SBR短程硝化系统的短期和长期影响\[J\].北京工业大学学报,2010,36(8):1 104-1 110.
[34]  \[17\]郑雅楠,滝川哲夫,郭建华,等.SBR法常、低温下生活污水短程硝化的实现及特性\[J\].中国环境科学2009,29(9):935-940.
[35]  Khin,T.,A.P.Annachhatre.Novel microbial nitrogen removal processes\[J\].Biotechnology Advances,2004,22(7):519-532.
[36]  苏彩丽,余泳昌,季宝杰.短程硝化厌氧氨氧化生物脱氮研究进展\[J\].环境科学与技术,2009,32(4):92-96.
[37]  祖波,张代钧,祖建,等.硝化过程中影响亚硝酸盐积累的因素\[J\].环境科学与技术,2009,32(4):1-5.
[38]  郭建华,彭永臻,黄惠珺,等.好氧曝气时间实时控制实现短程硝化\[J\].清华大学学报,2009,49(12):1 997-2 000.
[39]  Kim,D.J.,J.S.Chang,D.I.Lee,et al.Nitrification of high strength ammonia wastewater and nitrite accumulation characteristics\[J\].Water Sci.Technol.,2003,47(11):45-51.
[40]  Pambrun,V.,E.Paul,M.Sperandio.Modeling the partial nitrification in sequencing batch reactor for biomass adapted to high ammonia concentrations\[J\].Biotechnol.Bioeng.,2006,95(1):120-131.
[41]  丁文川,李桥,吉芳英,等.双泥SBR系统的短程硝化反硝化和反硝化除磷研究\[J\].中国给水排水,2010,26(13):11-15.
[42]  \[25\]郑兴灿,李亚新.污水脱氮除磷技术\[M\].北京:中国建筑工业出版社,1998.
[43]  \[26\]Bortone,G.,S.M.Libelli,A.Tilche,et al.Anoxic phosphate uptake in the DEPHANOX process\[J\].Water Sci.Technol.,1999,40(4-5):177-185.
[44]  李勇智,王淑滢,吴凡松,等.强化生物除磷体系中反硝化聚磷菌的选择与富集\[J\].环境科学学报,2009,24(1):45-49.
[45]  闻人银峰,李祥.反硝化除磷工艺研究进展\[J\].中国资源综合利用,2010,28(2):40-43.
[46]  曹长青,雷中方,胡志荣,等.反硝化除磷过程中的影响因素探讨\[J\].中国给水排水,2005,21(7):22-25.
[47]  Ahn,J.,T.Daidou,S.Tsuneda,A.Hirata.Selection and dominance mechanisms of denitrifying phosphateaccumulating organisms in biological phosphate removal process\[J\].Biotechnology Letters,2001,23:2 005-2 008.
[48]  \[31\]Merzouki,M.,N.Bernet,J.P.Delgenès,et al.Effect of prefermentation on denitrifying phosphorus removal in slaughterhouse wastewater\[J
[49]  Bioresource Technology,2005,96(12):1 317-1 322.
[50]  方茜,张可方.硝酸盐对反硝化聚磷菌除磷性能的影响\[J\].中国给水排水,2010,26(15):64-68.
[51]  \[33\]Meinhold,J.,C.D.M.Filipe,G.T.Daigger,et al.Characterization of the denitrification fraction of phosphorus accumulating phosphate removal
[52]  Water Sci.Technol.,1999,39(1):31-42.
[53]  张小玲,王磊,王志盈.NO-2作为缺氧吸磷电子受体的试验研究\[J\].环境科学,2006,27(5):930-934.
[54]  Hu,J.Y.,S.L.Ong,W.J.Ng,et al.A new method for characterizing denitrifying phosphorus removal bacteria by using three different types ofelectron acceptors\[J\].Water Research,2003,37(14):3 463-3 467.

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