文献信息 RETRACTED

Gravity-driven high flux filtration behavior and microbial community of an integrated granular activated carbon and dynamic membrane bioreactor for domestic wastewater treatment

期刊 The Science of the total environment
发表日期 2022-Jun-15
作者 Yang Yuan; Deng Weihang; Hu Yisong; Chen Rong; Wang Xiaochang C
DOI 10.1016/j.scitotenv.2022.153930
PMID 35202693
原始摘要

A gravity-driven dynamic membrane bioreactors (DMBR) with GAC addition (G-DMBR) was operated under constant pressure filtration mode (using 20 cm water head) for real domestic wastewater treatment. During the stable operation period, the treatment performance, DM filtration behavior and mechanism as well as microbial properties were studied and compared with a control DMBR (C-DMBR). Both DMBRs showed stable removal of chemical oxygen demand (COD) and ammonia (NH-N) with average removal rates over 88% and 98%, respectively. GAC addition effectively enhanced dynamic membrane (DM) permeability with a stable flux of 17 to 65 L/mh, which was approximately four times higher than that in the C-DMBR without GAC addition. Filtration resistance analysis indicated the DM formation can be divided to three stages: the formation of the initial DM layer, the development of mature DM layer and dynamic equilibrium stage of the DM layer. Filtration model analysis illustrated that added GAC could be the skeleton of the DM, resulting in a more porous and incompressible DM layer. Additionally, microbial community analysis revealed that in the G-DMBR several fouling-causing phyla including Proteobacteria reduced while other phyla preferring attached growth such as Bacteroidetes and Gemmatimonadetes increased. Thus, adding GAC to the DMBR can be an effective strategy for achieving stable and high-flux operation by modifying DM properties and regulating DM formation process and structure.

撤稿信息
撤稿日期 2026-07-21
撤稿期刊 The Science of the total environment
发布机构 Netherlands
通知PMID 42481255
撤稿通知标题:
Retraction notice to "Gravity-driven high flux filtration behavior and microbial community of an integrated granular activated carbon and dynamic membrane bioreactor for domestic wastewater treatment" [Sci. Total Environ. 825 (2022) 53930]
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研究领域
工程科学
文章类型
原创研究(Original Research)
研究方法
其他
数据来源
实验室自产(Lab-generated)
撤稿原因
无法确定
撤稿类型
撤稿(Full Retraction)
研究机构
Key Lab of Northwest Water Resource, Environment and Ecology, MOE, Xi'an University of Architecture and Technology, Xi'an 710055, PR China; International Science & Technology Cooperation Center for Urban Alternative Water Resources Development, Xi'an 710055, PR China
国家/地区
中国; Xi'an
资助来源
未提及
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