非发酵型短程反硝化除磷菌的鉴定和代谢机理研究(英文)

被引:8
作者
刘晖 [1 ,2 ,3 ]
孙彦富 [2 ]
贾晓珊 [1 ]
李军 [3 ]
周康群 [2 ]
屈向东 [1 ,2 ]
陶雪琴 [2 ]
陈瑜 [3 ]
机构
[1] School of Environmental Science and Engineering, Sun Yat-sen University
[2] Department of Environment Science and Engineering, Zhongkai University of Agriculture and Engineering
[3] Key Laboratory of Beijing Water Quality Science and Water Environment Recovery Engineering, Beijing University of Technology
关键词
short-cut denitrifying phosphorus removing bacteria; Paracoccus denitrificans; non-fermentative bacteria; metabolic mechanism; poly-β-hydroxybutyrate;
D O I
暂无
中图分类号
X172 [环境微生物学];
学科分类号
071012 ; 0713 ;
摘要
To investigate the characteristics and metabolic mechanism of short-cut denitrifying phosphorus-removing bacteria (SDPB) that are capable of enhanced biological phosphorus removal (EBPR) using nitrite as an electron acceptor, an aerobic/anoxic sequencing batch reactor was operated under three phases. An SDPB-strain YC was screened after the sludge enrichment and was identified by morphological, physiological, biochemical properties and 16S rDNA gene sequence analysis. Denitrifying phosphorus-removing experiments were conducted to study anaerobic and anoxic metabolic mechanisms by analyzing the changes of chemical oxygen demand (COD), phosphate, nitrite, poly-β-hydroxybutyrate (PHB), and glycogen. The results show that strain YC is a non-fermentative SDPB similar to Paracoccus denitrificans. As a kind of non-fermentative bacteria, the energy of strain YC was mainly generated from phosphorus release (96.2%) under anaerobic conditions with 0.32 mg P per mg synthesized PHB. Under anoxic conditions, strain YC accumulated 0.45 mg P per mg degraded PHB, which produced most of energy for phosphate accumulation (91.3%) and a little for glycogen synthesis (8.7%). This metabolic mechanism of strain YC is different from that of traditional phosphorus-accumulating organisms (PAOs). It is also found that PHB, a kind of intracellular polymer, plays a very important role in denitrifying and accumulating phosphorus by supplying sufficient energy for phosphorous accumulation and carbon sources for denitrification. Therefore, monitoring ΔP/ΔPHB and ΔNO2--N/ΔPHB is more necessary than monitoring ΔP/ΔCOD,ΔNO2--N/ΔCOD, or ΔP/ΔNO2--N.
引用
收藏
页码:332 / 340
页数:9
相关论文
共 11 条
[1]   SBR法处理垃圾渗滤液的反硝化过程中NO2-积累的研究(英文) [J].
孙洪伟 ;
杨庆 ;
彭永臻 ;
时晓宁 ;
王淑莹 ;
张树军 .
Chinese Journal of Chemical Engineering, 2009, 17 (06) :1027-1031
[2]   SBR工艺除磷过程与种群结构在线监测(英文) [J].
崔有为 ;
王淑莹 ;
李晶 .
Chinese Journal of Chemical Engineering, 2009, 17 (03) :484-492
[3]   城市生活垃圾晚期渗滤液中氨氮的常温短程去除 [J].
张树军 ;
彭永臻 ;
王淑莹 ;
郑淑文 ;
毛心慰 .
化工学报, 2007, (04) :1042-1047
[4]  
Advances in enhanced biological phosphorus removal: From micro to macro scale[J] . Adrian Oehmen,Paulo C. Lemos,Gilda Carvalho,Zhiguo Yuan,Jürg Keller,Linda L. Blackall,Maria A.M. Reis. Water Research . 2007 (11)
[5]   A new method for characterizing denitrifying phosphorus removal bacteria by using three different types of electron acceptors [J].
Hu, JY ;
Ong, SL ;
Ng, WJ ;
Lu, F ;
Fan, XJ .
WATER RESEARCH, 2003, 37 (14) :3463-3471
[6]   The microbiology of biological phosphorus removal in activated sludge systems [J].
Seviour, RJ ;
Mino, T ;
Onuki, M .
FEMS MICROBIOLOGY REVIEWS, 2003, 27 (01) :99-127
[7]   Characterization of denitrifying phosphate-accumulating organisms cultivated under different electron acceptor conditions using polymerase chain reaction-denaturing gradient gel electrophoresis assay [J].
Ahn, J ;
Daidou, T ;
Tsuneda, S ;
Hirata, A .
WATER RESEARCH, 2002, 36 (02) :403-412
[8]  
Use of metabolic inhibitors and gas chromatography/mass spectrometry to study poly- β -hydroxyalkanoates metabolism involving cryptic nutrients in enhanced biological phosphorus removal systems[J] . Tai Man Louie,Terry J Mah,William Oldham,William D Ramey. Water Research . 2000 (5)
[9]   Microbiology and biochemistry of the enhanced biological phosphate removal process [J].
Mino, T ;
Van Loosdrecht, MCM ;
Heijnen, JJ .
WATER RESEARCH, 1998, 32 (11) :3193-3207
[10]   Steady-state analysis to evaluate the phosphate removal capacity and acetate requirement of biological phosphorus removing mainstream and sidestream process configurations [J].
Smolders, GJF ;
vanLoosdrecht, MCM ;
Heijnen, JJ .
WATER RESEARCH, 1996, 30 (11) :2748-2760