SBR工艺除磷过程与种群结构在线监测(英文)

被引:6
作者
崔有为 [1 ]
王淑莹 [1 ]
李晶 [2 ]
机构
[1] Key Laboratory of Beijing for Water Quality Science and Water Environment Recovery Engineering,Beijing University of Technology
[2] China Aeronautical Project and Design Institute
关键词
on-line monitoring; phosphorus removal; sequencing batch reactor; pH; oxidation-reduction potential;
D O I
暂无
中图分类号
X703 [废水的处理与利用];
学科分类号
083002 ;
摘要
For efficient energy consumption and control of effluent quality, the cycle duration for a sequencing batch reactor (SBR) needs to be adjusted by real-time control according to the characteristics and loading of waste-water. In this study, an on-line information system for phosphorus removal processes was established. Based on the analysis for four systems with different ecological community structures and two operation modes, anaerobic-aerobic process and anaerobic-anaerobic process, the characteristic patterns of oxidation-reduction potential (ORP) and pH were related to phosphorous dynamics in the anaerobic, anoxic and aerobic phases, for determination of the end of phosphorous removal. In the operation mode of anaerobic-aerobic process, the pH profile in the anaerobic phase was used to estimate the relative amount of phosphorous accumulating organisms (PAOs) and glycogen accumulat-ing organisms (GAOs), which is beneficial to early detection of ecology community shifts. The on-line sensor val-ues of pH and ORP may be used as the parameters to adjust the duration for phosphorous removal and community shifts to cope with influent variations and maintain appropriate operation conditions.
引用
收藏
页码:484 / 492
页数:9
相关论文
共 20 条
[1]  
Correlating on-line monitoring parameters, pH, DO and ORP with nutrient removal in an intermittent cyclic process bioreactor system[J] . Pankaj Tanwar,Tapas Nandy,Pallavi Ukey,Pravin Manekar.Bioresource Technology . 2008 (16)
[2]  
Denitrifying phosphorus removal: Linking the process performance with the microbial community structure[J] . Gilda Carvalho,Paulo C. Lemos,Adrian Oehmen,Maria A.M. Reis.Water Research . 2007 (19)
[3]   Control of SBR switching by fuzzy pattern recognition [J].
Marsili-Libelli, S .
WATER RESEARCH, 2006, 40 (05) :1095-1107
[4]   Microbial population response to changes of the operating conditions in a dynamic nutrient-removal sequencing batch reactor [J].
Freitas, F ;
Temudo, M ;
Reis, MAM .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2005, 28 (03) :199-209
[5]   Evaluation of two control strategies for a sequencing batch reactor degrading high concentration peaks of 4-chlorophenol [J].
Buitrón, G ;
Schoeb, ME ;
Moreno-Andrade, L ;
Moreno, JA .
WATER RESEARCH, 2005, 39 (06) :1015-1024
[6]   Phosphate uptake and release rates with different carbon sources in biological nutrient removal using a SBR [J].
Kargi, F ;
Ahmet, U ;
Baskaya, HS .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2005, 76 (01) :71-75
[7]   Anaerobic metabolism of propionate by polyphosphate-accumulating organisms in enhanced biological phosphorus removal systems [J].
Oehmen, A ;
Zeng, RJ ;
Yuan, ZG ;
Keller, J .
BIOTECHNOLOGY AND BIOENGINEERING, 2005, 91 (01) :43-53
[8]  
Integrated real-time control strategy for nitrogen removal in swine wastewater treatment using sequencing batch reactors[J] . Ju-Hyun Kim,Meixue Chen,Naohiro Kishida,Ryuichi Sudo.Water Research . 2004 (14)
[9]   Application of multiway ICA for on-line process monitoring of a sequencing batch reactor [J].
Yoo, CK ;
Lee, DS ;
Vanrolleghem, PA .
WATER RESEARCH, 2004, 38 (07) :1715-1732
[10]   Analysis of the microbial community structure and function of a laboratory scale enhanced biological phosphorus removal reactor [J].
Levantesi, C ;
Serafim, LS ;
Crocetti, GR ;
Lemos, PC ;
Rossetti, S ;
Blackall, LL ;
Reis, MAM ;
Tandoi, V .
ENVIRONMENTAL MICROBIOLOGY, 2002, 4 (10) :559-569