Ryu JunHee, Jung JaeHyun, Park KiYoung, Song WonJung, Choi ByeongGyu, Kweon JiHyang
Department of Environmental Engineering, Konkuk University, 120, Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea.
HANSU Technical Service Ltd., Bundang Techno-Park, 145 Yatap-Dong, Bundang-Gu, Sungnam-City, Kyunggi-Do 13510, Republic of Korea.
J Hazard Mater. 2021 Sep 5;417:126088. doi: 10.1016/j.jhazmat.2021.126088. Epub 2021 May 14.
A membrane bioreactor with humic acid substrate (MBR-H) was operated to investigate organic removal and membrane performance. Approximately, 60% of chemical oxygen demand removal was observed in MBR-H. The biosorption capacity reached to the maximum value of 29.2 mg g in the experiments with various activated sludge concentrations and the amount adsorbed on the newly produced microbes was limited. To understand key functions of microorganisms in the biodegradation of humic acid, the microbial community was examined. The dominant phylum was changed from Actinobacteria at the raw sludge to Proteobacteria at the MBR-H. Especially, great increases of β-, γ-, and δ-Proteobacteria in the MBR-H indicated that those class of Proteobacteria played a vital role in humic acid removal. Investigation at the genus level showed enrichment of Stenotrophobacter in the MBR-H, which indicated the presence of metabolites in the proposed humic substance degradation pathway. In addition, the bacteria producing extracellular polymeric substances were increased in the MBR-H. Substantial variation of microbial community function was occurred in the MBR to degrade humic acid. Operational parameters in MBRs might be sought to maintain water permeability and to obtain preferable condition to evolution of microbial consortia for degradation of the refractory organic matter.
运行一个以腐殖酸为底物的膜生物反应器(MBR-H)来研究有机物去除和膜性能。在MBR-H中观察到约60%的化学需氧量去除率。在不同活性污泥浓度的实验中,生物吸附容量达到最大值29.2毫克/克,且新产生微生物上吸附的量有限。为了解微生物在腐殖酸生物降解中的关键作用,对微生物群落进行了检测。优势菌门从原污泥中的放线菌变为MBR-H中的变形菌。特别是,MBR-H中β-、γ-和δ-变形菌的大量增加表明这些变形菌类在腐殖酸去除中起重要作用。属水平的研究表明MBR-H中嗜麦芽窄食单胞菌富集,这表明在所提出的腐殖质降解途径中存在代谢产物。此外,MBR-H中产生胞外聚合物的细菌增加。MBR中微生物群落功能发生了显著变化以降解腐殖酸。可能需要寻找MBR的运行参数来维持水渗透性,并获得有利于微生物群落进化以降解难降解有机物的适宜条件。