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首页> 外文期刊>Environmental Science: Water Research & Technology >Leveraging feast and famine selection pressure during startup of continuous flow aerobic granulation systems to manage treatment performance
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Leveraging feast and famine selection pressure during startup of continuous flow aerobic granulation systems to manage treatment performance

机译:在连续流动的有氧造粒系统启动期间利用盛宴和饥荒选择压力来管理治疗性能

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Hydraulic selection pressure that selectively washes out flocculent microbial sludge has been a conventional approach to drive flocculent systems towards aerobic granulation. Such substantial sludge washout inevitably compromises treatment performance during reactor startup, which is unacceptable in full-scale applications of aerobic granulation technology. This study explored the possible use of feast and famine conditions to increase selection pressure to drive aerobic granulation while avoiding substantial sludge washout during startup. Experimental results demonstrated that continuously returning the sludge in the underflow and overflow of a gravity selector to the feast and famine zones of a plug flow reactor, respectively, can effectively drive a smoother transition from flocculent activated sludge to granular sludge without dramatic sludge concentration and effluent quality decline during reactor startup. In comparison to a more conventional approach with only hydraulic selection pressure, adding the microbial sludge selection afforded through feast and famine conditions offers a novel startup strategy that can better maintain treated water quality by controlling system solids retention time. It is anticipated that the outcome from this study will provide further engineering guidance to promote full-scale applications of continuous flow aerobic granulation technology.
机译:液压选择压力选择性地洗掉絮状微生物污泥的常规方法,用于驱动絮凝剂造成有氧造粒的絮凝剂。这种大量污泥冲洗不可避免地损害了反应堆启动期间的治疗性能,这在有氧造粒技术的全规模应用中是不可接受的。本研究探讨了可能使用盛宴和饥荒的条件来增加选择压力以驱动有氧造粒,同时在启动期间避免大量污泥冲洗。实验结果证明,在塞流反应器的盛会和饥荒区中,连续将污泥返回到塞流反应器的盛宴和饥荒区域,可以有效地推动从絮凝活性污泥到颗粒污泥的颗粒污泥,而无剧烈污泥浓度和流出物反应堆启动期间的质量下降。与仅具有液压选择压力的更常规方法相比,通过盛宴和饥荒条件添加微生物污泥选择提供了一种新颖的启动策略,可以通过控制系统固体保留时间来更好地保持处理的水质。预计本研究的结果将提供进一步的工程指导,以促进连续流动有氧造粒技术的全规模应用。

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    Virginia Tech Dept Civil & Environm Engn 44961 Loudoun Water Way Ashburn VA 20147 USA;

    Hampton Rd Sanitat Dist 1434 Air Rail Ave Virginia Beach VA 23455 USA;

    Upper Occoquan Serv Author 14631 Compton Rd Centreville VA 20121 USA;

    Upper Occoquan Serv Author 14631 Compton Rd Centreville VA 20121 USA;

    Virginia Tech Dept Civil & Environm Engn 44961 Loudoun Water Way Ashburn VA 20147 USA;

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