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用于染料废水处理的膜生物反应器中生物膜结构的表征及其对膜渗透性的影响。

Characterization of biofilm structure and its effect on membrane permeability in MBR for dye wastewater treatment.

作者信息

Yun Mi-Ae, Yeon Kyung-Min, Park Jong-Sang, Lee Chung-Hak, Chun Jongsik, Lim Dong Joon

机构信息

School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Korea.

出版信息

Water Res. 2006 Jan;40(1):45-52. doi: 10.1016/j.watres.2005.10.035. Epub 2005 Dec 19.

Abstract

Two membrane bioreactors were operated at aerobic (DO=6.0mg/L) and anoxic (DO<0.3mg/L) conditions for the treatment of synthetic dye wastewater to determine the effect of dissolved oxygen on membrane filterability. The rate of membrane fouling for the anoxic MBR was five times faster than that for the aerobic MBR. Differences in the nature of the biofilm that was formed on the membrane surface as the result of different DO level was the main factor in the different fouling rates. The biofilm structure was characterized using digital image analysis techniques. Biofilm images were obtained using confocal laser scanning microscopy (CLSM) at various operation points. Structural parameters were then computed from these images using an image analysis software (ISA-2). The structural parameters indicated that the anoxic biofilm was thinner than the aerobic biofilm but the anoxic biofilm was spread out on the membrane surface more uniformly and densely, resulting in the higher membrane fouling. Based on the extracellular polymeric substances (EPS) visualization and quantification, it was also found that EPS, key membrane foulants were spread out more uniformly in the anoxic biofilm in spite of lower amount of EPS compared to that in the aerobic biofilm.

摘要

运行两个膜生物反应器,分别在好氧(溶解氧=6.0mg/L)和缺氧(溶解氧<0.3mg/L)条件下处理合成染料废水,以确定溶解氧对膜过滤性能的影响。缺氧膜生物反应器的膜污染速率比好氧膜生物反应器快五倍。由于溶解氧水平不同,膜表面形成的生物膜性质存在差异,这是导致不同污染速率的主要因素。使用数字图像分析技术对生物膜结构进行表征。在不同运行点使用共聚焦激光扫描显微镜(CLSM)获取生物膜图像。然后使用图像分析软件(ISA-2)从这些图像中计算结构参数。结构参数表明,缺氧生物膜比好氧生物膜薄,但缺氧生物膜在膜表面分布更均匀、更密集,导致更高的膜污染。基于胞外聚合物(EPS)的可视化和定量分析,还发现尽管缺氧生物膜中的EPS量比好氧生物膜中的少,但关键膜污染物EPS在缺氧生物膜中分布更均匀。

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