Performance of a novel annular electric field membrane bioreactor and its membrane fouling control in treating catering wastewater

被引:0
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作者
Zhang, Rong [1 ]
Li, Mengqian [1 ]
Ma, Huan [2 ]
Wang, Yanyan [3 ]
Xin, Beiyu [1 ]
Guo, Jifeng [1 ]
机构
[1] Key Laboratory of Subsurface Hydrology and Ecological Effect in Arid Region of the Ministry of Education, Key Laboratory of Eco-hydrology and Water Security in Arid and Semi-arid Regions of Ministry of Water Resources, School of Water and Environment, Chan
[2] Powerchina Northwest Engineering Corporation, Xi 'an,710065, China
[3] Shaanxi Applied Physics-Chemistry Research Institute, Xi 'an,710061, China
关键词
Membrane fouling - Wastewater treatment;
D O I
10.1016/j.chemosphere.2024.143756
中图分类号
学科分类号
摘要
This study aimed to investigate the effects of different voltage and aeration conditions on catering wastewater treatment and membrane fouling in a novel annular electric field membrane bioreactor (AEMBR). The results indicated that the synergistic effect of annular electric field and aeration promoted the degradation of wastewater and the alleviation of membrane fouling. The treatment effect was optimal under a micro electric field of 0.5 V, with removal rates for COD, NH4+-N, TP, and oil ranging from 96.85% to 99.36%, 80.43%–83.01%, 95.46%–97.79%, and 98.83%–99.15%, respectively. Additionally, the fluorescence intensity of macromolecular proteins and small molecular acids decreased. Simultaneously, the average growth rate of transmembrane pressure (TMP) reduced by approximately 0.4 kPa/d. The species abundance and diversity of activated sludge increased, promoting the growth of dominant bacteria, all while maintaining low energy consumption. The aeration intensity had relatively little impact on system operation, and the force of the annular electric field was greater than the force of aeration. This study verified the optimal benefits under micro electric field conditions and provided a basis for the optimization of future process design to achieve a more efficient and economical wastewater treatment system. © 2024 Elsevier Ltd
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