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Start-up and operation of an aerobic granular sludge system under low working temperature inoculated with cold-adapted activated sludge from Finland

机译:在芬兰冷适应活性污泥接种低工作温度下有氧颗粒污泥系统的启动和运行

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An aerobic granular sludge system has been started-up and operated at 7 degrees C temperature using cold-adapted activated sludge as inoculum. The system could form granular biomass due to batch operation allowing for just 5-3 min of biomass sedimentation. Scanning electron microscopy showed that fungi helped in the granular biomass formation in the early stages of the granule formation. The removal performance of the system was of 92-95% in BOD5, 75-80% in COD, 70-76% in total nitrogen and 50-60% in total phosphorous. The bacterial community structure from cold-adapted activated sludge changed during the operational time, leading to a final configuration dominated by Microbacteriaceae members Microbacterium and Leucobacter, which were strongly correlated to biomass settling velocity and biore-actor performance, as suggested by multivariate redundancy analyses. This experiment showed that aerobic granular sludge systems could be successfully started-up and operated, with high performance, under low operational temperatures when using cold-adapted biomass as inoculum. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用冷适应的活化污泥作为接种物,有氧颗粒污泥系统已启动并在7摄氏度温度下操作。由于批量操作,该系统可以形成颗粒生物质,允许仅为5-3分钟的生物质沉淀。扫描电子显微镜显示真菌在颗粒形成的早期阶段有助于粒状生物质形成。该系统的去除性能为BoD5,75-80%的鳕鱼中的92-95%,总氮气的70-76%,总磷的50-60%。来自冷适应活化污泥的细菌群落结构在操作时间内发生变化,导致由微生物杆菌和白杆菌和白杆菌主导的最终构型,这与生物量沉降速度和生物actor性能强烈相关,如多变量冗余分析所提出的。该实验表明,在使用冷适应生物质作为接种物中,在低运行温度下,有氧颗粒污泥系统可以成功启动和操作。 (c)2017 Elsevier Ltd.保留所有权利。

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