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在具有交替曝气周期的嗜热膜生物反应器(TMR)中处理污泥

Treatment of sewage sludge in a thermophilic membrane reactor (TMR) with alternate aeration cycles.

作者信息

Collivignarelli Maria Cristina, Castagnola Federico, Sordi Marco, Bertanza Giorgio

机构信息

Department of Civil Engineering and Architecture, University of Pavia, via Ferrata 1, 27100 Pavia, Italy.

Department of Civil, Environmental, Architectural Engineering and Mathematics, University of Brescia, via Branze 43, 25123 Brescia, Italy.

出版信息

J Environ Manage. 2015 Oct 1;162:132-8. doi: 10.1016/j.jenvman.2015.07.031. Epub 2015 Jul 31.

Abstract

The management of sewage sludge is becoming a more and more important issue, both at national and international level, in particular due to the uncertain recovery/disposal future options. Therefore, it is clear that the development of new technologies that can mitigate the problem at the source by reducing sludge production is necessary, such as the European Directive 2008/98/EC prescribes. This work shows the results obtained with a thermophilic membrane reactor, for processing a biological sludge derived from a wastewater treatment plant (WWTP) that treats urban and industrial wastewater. Sewage sludge was treated in a thermophilic membrane reactor (TMR), at pilot-scale (1 m(3) volume), with alternate aeration cycles. The experimentation was divided into two phases: a "startup phase" during which, starting with a psychrophilic/mesophilic biomass, thermophilic conditions were progressively reached, while feeding a highly biodegradable substrate; the obtained thermophilic biomass was then used, in the "regime phase", to digest biological sludge which was fed to the plant. Good removal yields were observed: 64% and 57% for volatile solids (VS) and total COD (CODtot), respectively, with an average hydraulic retention time (HRT) equal to 20 d, an organic loading rate (OLR) of about 1.4-1.8 kg COD m(-3) d(-1) and aeration/non aeration cycles alternated every 4 h.

摘要

污水污泥的管理正成为国家和国际层面上越来越重要的问题,特别是由于未来回收/处置选择的不确定性。因此,很明显,开发能够通过减少污泥产量从源头上缓解该问题的新技术是必要的,正如欧洲指令2008/98/EC所规定的那样。这项工作展示了使用嗜热膜生物反应器处理来自处理城市和工业废水的污水处理厂(WWTP)的生物污泥所获得的结果。污水污泥在中试规模(1立方米容积)的嗜热膜生物反应器(TMR)中进行处理,采用交替曝气循环。实验分为两个阶段:“启动阶段”,在此阶段,从嗜冷/嗜温生物质开始,逐渐达到嗜热条件,同时投喂高度可生物降解的底物;然后在“稳定阶段”,使用获得的嗜热生物质消化投喂到该装置中的生物污泥。观察到了良好的去除率:挥发性固体(VS)和总化学需氧量(CODtot)的去除率分别为64%和57%,平均水力停留时间(HRT)等于20天,有机负荷率(OLR)约为1.4 - 1.8千克化学需氧量每立方米每天,曝气/非曝气循环每4小时交替一次。

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