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在膜生物反应器中,将跨膜压力(TMP)的增加与膜表面生物滤饼中的微生物特性相关联。

Correlating TMP increases with microbial characteristics in the bio-cake on the membrane surface in a membrane bioreactor.

作者信息

Hwang Byung-Kook, Lee Woo-Nyoung, Yeon Kyung-Min, Park Pyung-Kyu, Lee Chung-Hak, Chang In-Soung, Drews Anja, Kraume Matthias

机构信息

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

出版信息

Environ Sci Technol. 2008 Jun 1;42(11):3963-8. doi: 10.1021/es7029784.

Abstract

Subcritical flux operation is widely practiced in membrane bioreactors (MBRs) to avoid severe membrane fouling and, thus, to maintain sustainable permeability. Filtration at a constant subcritical flux, however, usually leads to a two-stage increase in the transmembrane pressure (TMP): initially slowly, then abruptly. We have investigated the mechanism of this two-stage TMP increase through analyses of the structure and microbial characteristics of the bio-cake formed on the membrane. The MBR was operated under various subcritical and supercritical flux conditions. Under subcritical conditions, we observed the typical two-stage TMP increase. When a constant flux augmented and reached the supercritical conditions, however, the dual TMP change gradually transformed into a steeper, one-stage TMP increase. The second stage TMP increase under the subcritical flux was closely related to the sudden increase in the concentration of extra-cellular polymeric substances (EPSs) at the bottom layer of the bio-cake; we attribute the one-stage TMP increase under the supercritical conditions to the accumulation of microbial flocs and the reduced porosity of the bio-cake under compression. We explain the variation of the EPS concentration in the bio-cake in terms of the spatial and temporal changes of the live-to-dead ratio along the depth of the bio-cake.

摘要

亚临界通量操作在膜生物反应器(MBR)中被广泛应用,以避免严重的膜污染,从而维持可持续的渗透率。然而,在恒定亚临界通量下过滤通常会导致跨膜压力(TMP)出现两阶段增加:最初缓慢增加,然后急剧增加。我们通过分析膜上形成的生物滤饼的结构和微生物特性,研究了这种TMP两阶段增加的机制。MBR在各种亚临界和超临界通量条件下运行。在亚临界条件下,我们观察到了典型的TMP两阶段增加。然而,当恒定通量增加并达到超临界条件时,TMP的双重变化逐渐转变为更陡峭的单阶段TMP增加。亚临界通量下TMP的第二阶段增加与生物滤饼底层细胞外聚合物(EPS)浓度的突然增加密切相关;我们将超临界条件下单阶段TMP增加归因于微生物絮体的积累以及压缩下生物滤饼孔隙率的降低。我们根据沿生物滤饼深度的活死比的时空变化来解释生物滤饼中EPS浓度的变化。

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