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Evaluation of upgrading a full-scale activated sludge process integrated with floating biofilm carriers

机译:评估与浮式生物膜载体整合的大规模活性污泥工艺的升级

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This study evaluated the performance of a full-scale upgrade of an existing wastewater treatment plant (WWTP) with the intermittent cyclic extended aeration system (ICEAS), located in Qingdao, China. The ICEAS system was not able to meet effluent standards; therefore, a series of modifications and control strategies were applied as follows: (1) floating plastic carriers were added to the tank to aid biofilm formation; (2) operation parameters such as mixing and aeration time, feeding rate, and settling time were adjusted and controlled with a real-time control system; (3) a sludge return system and submersible water impellers were added; (4) the aeration system was also improved to circulate carriers and prevent clogging. The modified ICEAS system exhibited efficient organic and nutrient removal, with high removal efficiencies of chemical oxygen demand (89.57± 4.10%), NH_4~+-N (95.46±3.80%), and total phosphorus (91.90±4.36%). Moreover, an annual power reduction of 1.04 × 10~7 kW·h was realized as a result of these modifications.
机译:这项研究评估了使用位于中国青岛的间歇循环扩展曝气系统(ICEAS)对现有废水处理厂(WWTP)进行全面升级的性能。 ICEAS系统无法达到废水标准;因此,应用了一系列修改和控制策略,如下:(1)将漂浮的塑料载体添加到水箱中以帮助生物膜形成; (2)通过实时控制系统调节和控制混合和通气时间,进料速度和沉降时间等操作参数; (3)增加了污泥回流系统和潜水式水叶轮; (4)还改进了曝气系统,以循环载体并防止堵塞。改进的ICEAS系统具有高效的有机和养分去除能力,对化学需氧量(89.57±4.10%),NH_4〜+ -N(95.46±3.80%)和总磷(91.90±4.36%)的去除效率高。这些修改的结果是,实现了每年1.04×10〜7 kW·h的功率降低。

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