| Literature DB >> 20092865 |
Byung-Kook Hwang1, Jae-Hyuk Kim, Chang Hoon Ahn, Chung-Hak Lee, Jae-Yoon Song, Young-Hyun Ra.
Abstract
We have combined a turbulent jet flow ozone contactor (TJC) with a membrane bioreactor (MBR) to establish a zero-discharge system in terms of excess sludge in the MBR. The TJC-MBR system was compared with the conventional MBR (Control-MBR) with respect to i) the size and zeta potential of the sludge particles, ii) the loosely bound extra-cellular polymeric substances (EPSs) and tightly bound EPS of the microbial flocs, iii) the porosity and biovolume of the bio-cake accumulated on the membrane, and iv) the membrane permeability. The TJC system generated the ozonated sludge with a negligible amount of loosely bound EPS and a positive zeta potential. As a result, when such ozonated sludge was recycled, the average size of the sludge particles (e.g., microbial flocs) increased in the TJC-MBR. Consequently the bio-cake formed in the TJC-MBR had greater porosity than that in the Control-MBR, giving rise to higher membrane permeability in the TJC-MBR. Copyright 2009 Elsevier Ltd. All rights reserved.Entities:
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Year: 2009 PMID: 20092865 DOI: 10.1016/j.watres.2009.12.009
Source DB: PubMed Journal: Water Res ISSN: 0043-1354 Impact factor: 11.236