| Literature DB >> 27643734 |
Haifeng Zhuang1, Xiaoting Hong2, Hongjun Han3, Shengdao Shan2.
Abstract
A lab-scale study was investigated to evaluate the effect of pure oxygen fine bubbles on membrane bioreactor (O2-MBR) performance of treating coal gasification wastewater. Compared with conventional MBR using aeration source of air (CMBR), the removal efficiencies of COD and total phenols increased by 28% and 36%, and the organic compositions of treated effluent represented significant difference that was mainly attributed to the controlled the foam expansion and enhanced the enzymatic activities in O2-MBR. Moreover, membrane fouling mitigation was observed in O2-MBR, probably owing to the less EPS amount and larger PSD. It was notable that the pure oxygen with fine bubbles promoted marked evolution of bacterial community from CMBR to O2-MBR, particularly, the bacterial community richness and diversity in O2-MBR was lower than CMBR, and the genera Phycisphaera, Comamonas, Thauera and Ohtaekwangia composed the top four most relative abundance genera in O2-MBR, giving the total relative abundance of 26.7%.Entities:
Keywords: Bacterial community evolution; Coal gasification wastewater; Foam control; Membrane fouling; Pure oxygen fine bubbles
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Year: 2016 PMID: 27643734 DOI: 10.1016/j.biortech.2016.09.029
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642