Application of air backflushing technique in membrane bioreactor

被引:25
作者
Visvanathan, C
Yang, BS
Muttamara, S
Maythanukhraw, R
机构
[1] Asian Inst Technol, Environm Engn Program, Pathumthani 12120, Thailand
[2] Pukyong Natl Univ, Coll Engn, Dept Environm Engn, Pusan 608020, South Korea
关键词
activated sludge; air backflushing; filtration flux; flux decline; hollow fiber membrane; membrane bioreactor; microfiltration; transmembrane pressure;
D O I
10.1016/S0273-1223(97)00727-0
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The optimum air backflushing and filtration cycle was investigated for a 0.1 mu m hollow fiber membrane module immersed in an activated sludge aeration tank. It was found that 15 minutes filtration and 15 minutes air backflushing gave the best result both in terms of nux stability and net cumulative permeate volume. Although this cyclic operation could not completely remove the clogging, this process improved the flux by up to 371% compared to the continuous operation. During the long term runs, three different hydraulic retention times (HRT) of 12, 6 and 3 hours, corresponding to 0.16, 0.32 and 0.64 m(3)/m(2).d of permeate flux respectively, were investigated. Stable operation was obtained at the HRT of 12 hours. Decrease in HRT led to rapid formation of a compact cake layer on the membrane surface thus increasing the transmembrane pressure. It was also noted that filtration pressure increases with increase in bioreactor MLSS concentration. With operation time, the MLVSS/MLSS values decreased without significant effect on the process performance, indicating that inorganic mass constantly accumulated in the bioreactor. All the experimental runs produced more than 90% removal of COD, and TKN. In terms of physical, chemical, biological and bacteriological parameters, the membrane bioreactor effluent was superior to the conventional activated sludge process. (C) 1997 IAWQ.
引用
收藏
页码:259 / 266
页数:8
相关论文
共 6 条
[1]  
AYA H, 1994, WAT QUAL INT, V4, P21
[2]   MEMBRANE BIOREACTOR ON DOMESTIC WASTE-WATER TREATMENT SLUDGE PRODUCTION AND MODELING APPROACH [J].
CHAIZE, S ;
HUYARD, A .
WATER SCIENCE AND TECHNOLOGY, 1991, 23 (7-9) :1591-1600
[3]   JAPAN AQUA RENAISSANCE 90 PROJECT [J].
KIMURA, S .
WATER SCIENCE AND TECHNOLOGY, 1991, 23 (7-9) :1573-1582
[4]   AEROBIC DOMESTIC WASTE-WATER TREATMENT IN A PILOT-PLANT WITH COMPLETE SLUDGE RETENTION BY CROSS-FLOW FILTRATION [J].
MULLER, EB ;
STOUTHAMER, AH ;
VANVERSEVELD, HW ;
EIKELBOOM, DH .
WATER RESEARCH, 1995, 29 (04) :1179-1189
[5]  
Smith C., 1969, P 24 ANN PURD IND WA, P1300
[6]   DIRECT SOLID-LIQUID SEPARATION USING HOLLOW FIBER MEMBRANE IN AN ACTIVATED-SLUDGE AERATION TANK [J].
YAMAMOTO, K ;
HIASA, M ;
MAHMOOD, T ;
MATSUO, T .
WATER SCIENCE AND TECHNOLOGY, 1989, 21 (4-5) :43-54