A new method for characterizing denitrifying phosphorus removal bacteria by using three different types of electron acceptors

被引:278
作者
Hu, JY [1 ]
Ong, SL [1 ]
Ng, WJ [1 ]
Lu, F [1 ]
Fan, XJ [1 ]
机构
[1] Natl Univ Singapore, Dept Civil Engn, Water Res Ctr, Singapore 119260, Singapore
关键词
biological phosphorus removal; denitrifying phosphorus removal bacteria; oxygen; nitrate; nitrite; relative population of polyP bacteria;
D O I
10.1016/S0043-1354(03)00205-7
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study investigated the characteristics of denitrifying phosphorus removal bacteria by using three different types of electron acceptors as well as the positive role of nitrite in phosphorus removal process. Denitrifying phosphorous removal bacteria was enriched under anaerobic-anoxic (A/A) condition. To understand A/A sludge better, sludge from two other sources were also studied. These include sludges obtained from a lab-scale anaerobic-anoxic-aerobic (A/A/O) system and a local sewage treatment plant. Three types of possible electron acceptors (oxygen, nitrate and nitrite) were examined for their roles in phosphorus uptake. The results obtained indicated that oxygen, nitrate and nitrite were able to act as electron acceptors successfully. This observation suggested that in addition to the two well-accepted groups of phosphorus removal bacteria (one can only utilize oxygen to take up phosphorus, P-O, while the other can use both oxygen and nitrate, P-ON), a new group of phosphorus removal bacteria, P-ONn, which could use oxygen, nitrate or nitrite to take up phosphorus was identified. The relative population of these three types of bacteria could be calculated from results obtainable from phosphorus uptake batch experiments with either oxygen or nitrate or nitrite as electron acceptor. The results obtained in this study showed that A/A sludge had similar phosphorus removal performance as the A/A/O sludge. However, it has better denitrifying phosphorus removal capability, which was demonstrated by the relative population of the three groups of bacteria. The results also suggested that nitrite was not an inhibitor to phosphorus removal process. Instead, it is an alternative electron acceptor to oxygen or nitrate. (C) 2003 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:3463 / 3471
页数:9
相关论文
共 18 条
[1]  
Buchanan RE., 1975, Bergey's manual of determinative bacteriology, V8
[2]  
COMEAU Y, 1990, Water Pollution Research Journal of Canada, V25, P161
[3]  
COMEAU Y, 1987, BIOL PHOSPHATE REMOV, P39, DOI DOI 10.1016/B978-0-08-035592-4.50010-9
[4]  
Gerber A., 1987, Biological Phosphate Removal from Wastewaters, P123
[5]   THE APPLIED MICROBIOLOGY OF ENHANCED BIOLOGICAL PHOSPHATE REMOVAL - ACCOMPLISHMENTS AND NEEDS [J].
JENKINS, D ;
TANDOI, V .
WATER RESEARCH, 1991, 25 (12) :1471-1478
[6]   BIOLOGICAL PHOSPHORUS UPTAKE UNDER ANOXIC AND AEROBIC CONDITIONS [J].
KERRNJESPERSEN, JP ;
HENZE, M .
WATER RESEARCH, 1993, 27 (04) :617-624
[7]   BIOLOGICAL PHOSPHORUS RELEASE AND UPTAKE UNDER ALTERNATING ANAEROBIC AND ANOXIC CONDITIONS IN A FIXED-FILM REACTOR [J].
KERRNJESPERSEN, JP ;
HENZE, M ;
STRUBE, R .
WATER RESEARCH, 1994, 28 (05) :1253-1255
[8]   BIOLOGICAL PHOSPHORUS REMOVAL FROM WASTE-WATER BY ANAEROBIC-ANOXIC SEQUENCING BATCH REACTOR [J].
KUBA, T ;
SMOLDERS, G ;
VANLOOSDRECHT, MCM ;
HEIJNEN, JJ .
WATER SCIENCE AND TECHNOLOGY, 1993, 27 (5-6) :241-252
[9]   Phosphorus and nitrogen removal with minimal cod requirement by integration of denitrifying dephosphatation and nitrification in a two-sludge system [J].
Kuba, T ;
VanLoosdrecht, MCM ;
Heijnen, JJ .
WATER RESEARCH, 1996, 30 (07) :1702-1710
[10]  
Kuba T, 1996, BIOTECHNOL BIOENG, V52, P685, DOI 10.1002/(SICI)1097-0290(19961220)52:6<685::AID-BIT6>3.3.CO