纳滤
化学
膜污染
膜
移动床生物膜反应器
生物反应器
生物降解
废水
生物膜
色谱法
结垢
膜生物反应器
废物管理
细菌
生物化学
有机化学
生物
遗传学
工程类
作者
Lei Cao,Yuanling Li,Peining Li,Xueting Zhang,Lei Ni,Li Qi,Huabing Wen,Xinbo Zhang,Yufeng Zhang
标识
DOI:10.1016/j.biortech.2022.127527
摘要
The present study operated the novel moving bed biofilm reactor-nanofiltration-membrane bioreactor (MBBR-NF-MBR) with loose polyamide NF membranes for the first time to treat roxithromycin (ROX) wastewater. Results showed that both MBBR-NF-MBRs achieved superior COD removal of 98.4% and 97.2% and excellent removal of ROX at 74.1% and 65.5%, respectively. The main membrane fouling mechanism was reversible fouling caused by the combination of abundant polysaccharides, proteins and Ca-P precipitates, which could be effectively removed by acidic cleaning. Sorption and biodegradation were the main removal routes of ROX in MBBR. Partial retention of loose NF membrane contributed to microbial metabolism and increased microbial diversity, especially the genera Hyphomicrobium in attached biofilm, which was reasonable for ROX removal. The cleavage of cladinose, demethylation, phosphorylation and β-oxidation in macrolactone ring were the main biotransformation reactions of ROX. This study provides novel insights for micropollutants wastewater treatment by using loose NF membrane in MBR.
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