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首页> 外文期刊>The Science of the Total Environment >Biocarriers facilitated gravity-driven membrane (GDM) reactor for wastewater reclamation: Effect of intermittent aeration cycle
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Biocarriers facilitated gravity-driven membrane (GDM) reactor for wastewater reclamation: Effect of intermittent aeration cycle

机译:生物载体促进重力驱动膜(GDM)反应器用于废水回收:间歇曝气循环的影响

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摘要

This study investigated the performances of gravity-driven membrane (GDM) reactors integrated with granule activated carbon (GAC) biofilm process for wastewater treatment under different intermittent aeration cycles (intensity and frequency). The results showed the removal efficiencies of dissolved organic carbon, total nitrogen, ammonia were significantly improved under intermittent aeration conditions (similar to 86-87%, similar to 29-37%, and similar to 83-99%, respectively) compared to non-aeration condition (similar to 72% and similar to 18%, and similar to 17%, respectively). In addition, it was found that the intermittent aeration significantly reduced the cake layer resistance and therefore improved similar to 130-300% the permeate flux compared to control without aeration. Microbial community analysis indicated that prokaryotic and eukaryotic compositions in the cake layer biofilm were significantly influenced by aeration condition. Lastly, energy consumption analysis revealed that GAC + GDM with shorter aeration period and low aeration intensity could be promising as a decentralized wastewater treatment process in terms of water quality and operating energy. (C) 2019 Elsevier B.V. All rights reserved.
机译:这项研究调查了重力驱动膜(GDM)反应器与颗粒活性炭(GAC)生物膜工艺集成在不同间歇曝气循环(强度和频率)下处理废水的性能。结果表明,在间歇曝气条件下,溶解有机碳,总氮,氨的去除效率显着提高(分别为86-87%,29-37%和83-99%)。 -充气条件(分别接近72%和18%,以及17%)。另外,发现间歇通气显着降低了滤饼层的阻力,因此与没有通气的对照相比,渗透通量提高了约130-300%。微生物群落分析表明,滤饼层生物膜中的原核和真核成分受通气条件的影响很大。最后,能耗分析表明,曝气时间短,曝气强度低的GAC + GDM从水质和运行能耗方面看,可以作为分散式废水处理工艺。 (C)2019 Elsevier B.V.保留所有权利。

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