Organics and nitrogen removal and sludge stability in aerobic granular sludge membrane bioreactor

被引:0
作者
Jingfeng Wang
Xuan Wang
Zuguo Zhao
Junwen Li
机构
[1] Institute of Environment and Health,The Key Lab of Hollow Fiber Membrane Materials and Membrane Process of Ministry of Education
[2] Tianjin Polytechnic University,undefined
来源
Applied Microbiology and Biotechnology | 2008年 / 79卷
关键词
Aerobic granular sludge; Membrane bioreactor; Simultaneous nitrification and denitrification (SND); Sludge stability;
D O I
暂无
中图分类号
学科分类号
摘要
Novel aerobic granular sludge membrane bioreactor (GMBR) was established by combining aerobic granular sludge technology with membrane bioreactor (MBR). GMBR showed good organics removal and simultaneous nitrification and denitrification (SND) performances for synthesized wastewater. When influent total organic carbon (TOC) was 56.8–132.6 mg/L, the TOC removal of GMBR was 84.7–91.9%. When influent ammonia nitrogen was 28.1–38.4 mg/L, the ammonia nitrogen removal was 85.4–99.7%, and the total nitrogen removal was 41.7–78.4%. Moreover, batch experiments of sludge with different particle size demonstrated that: (1) flocculent sludge under aerobic condition almost have no denitrification capacity, (2) SND capacity was caused by the granular sludge, and (3) the denitrification rate and total nitrogen removal efficiency were enhanced with the increased particle size. In addition, study on the sludge morphology stability in GMBR showed that, although some granular sludge larger than 0.9 mm disaggregated at the beginning of operation, the granular sludge was able to maintain the stability of its granular morphology, and at the end of operation, the amount of granular sludge (larger than 0.18 mm) stabilized in GMBR was more than 56–62% of the total sludge concentration. The partial disaggregation of large granules is closely associated with the change of operating mode from sequencing batch reactor (SBR) system to MBR system.
引用
收藏
页码:679 / 685
页数:6
相关论文
共 90 条
[1]  
Bai R(2002)Microfiltration of activated sludge wastewater—the effect of system operation parameters Sep Purif Technol 29 189-198
[2]  
Leow HF(1999)Aerobic granulation in a sequencing batch reactor Wat Res 33 2283-2290
[3]  
Beun JJ(2001)N-removal in a granular sludge sequencing batch airlift reactor Biotechnol Bioeng 75 82-92
[4]  
Hendriks A(2002)Aerobic granulation in a sequencing batch airlift reactor Wat Res 36 702-712
[5]  
van Loosdrecht MCM(2005)Anaerobic treatment of domestic wastewater in a membrane-coupled expended granular sludge bed (EGSB) reactor under moderate to low temperature Process Biochem 40 1063-1070
[6]  
Beun JJ(2006)Treatment of domestic wastewater by using a microaerobic membrane bioreactor Desalination 189 181-192
[7]  
Heijnen JJ(2004)Aerobic granular sludge technology: An alternative to activated sludge? Wat Sci Technol 49 1-7
[8]  
van Loosdrecht MCM(2004)Selection of slow growing organisms as a means for improving aerobic granular sludge stability Wat Sci Technol 49 9-17
[9]  
Beun JJ(2005)The formation and characteristics of aerobic granules in sequencing batch reactor (SBR) by seeding anaerobic granules Process Biochem 40 5-11
[10]  
van Loosdrecht MCM(2003)Removal of nitrogenous and carbonaceous substances by a porous carrier -membrane hybrid process for wastewater treatment J Biochem Eng 14 37-44