Biomass characteristics of two types of submerged membrane bioreactors for nitrogen removal from wastewater

被引:61
|
作者
Liang, Zhihua [1 ]
Das, Atreyee [1 ]
Beerman, Daniel [1 ]
Hu, Zhiqiang [1 ]
机构
[1] Univ Missouri, Dept Civil & Environm Engn, Columbia, MO 65211 USA
关键词
Membrane bioreactor; Alternating anoxic/aerobic; Nitrifying bacterial activity; Microbial community structure; qPCR; AMMONIA-OXIDIZING BACTERIA; BIOLOGICAL NUTRIENT REMOVAL; TIME PCR QUANTIFICATION; SLUDGE RETENTION TIME; ACTIVATED-SLUDGE; NITRIFYING BACTERIA; NITRIFICATION; PERFORMANCE; DIVERSITY;
D O I
10.1016/j.watres.2010.03.013
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biomass characteristics and microbial community diversity between a submerged membrane bioreactor with mixed liquor recirculation (MLE/MBR) and a membrane bioreactor with the addition of integrated fixed biofilm medium (IFMBR) were compared for organic carbon and nitrogen removal from wastewater. The two bench-scale MBRs were continuously operated in parallel at a hydraulic retention time (HRT) of 24 h and solids retention time (SRT) of 20 d. Both MBRs demonstrated good COD removal efficiencies (>97.7%) at incremental inflow organic loading rates. The total nitrogen removal efficiencies were 67% for MLE/MBR and 41% for IFMBR. The recirculation of mixed liquor from aerobic zone to anoxic zone in the MLE/MBR resulted in higher microbial activities of heterotrophic (46.96 mg O-2/gVSS h) and autotrophic bacteria (30.37 mg O-2/gVSS h) in the MLE/MBR compared to those from IFMBR. Terminal Restriction Fragment Length Polymorphism analysis indicated that the higher nitrifying activities were correlated with more diversity of nitrifying bacterial populations in the MLE/MBR. Membrane fouling due to bacterial growth was evident in both the reactors. Even though the trans-membrane pressure and flux profiles of MLE/MBR and IFMBR were different, the patterns of total membrane resistance changes had no considerable difference under the same operating conditions. The results suggest that metabolic selection via alternating anoxic/aerobic processes has the potential of having higher bacterial activities and improved nutrient removal in MBR systems. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3313 / 3320
页数:8
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