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Sensor-mediated Control for Aerobic Granular Sludge Process Treating Mainstream Anaerobic Effluent

机译:传感器介导的好氧颗粒污泥处理主流厌氧废水的控制

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The aim of this study is to develop a sensor-mediated control strategy with an aerobic granular sludge reactor (GSR) for mainstream energy efficient nitrogen removal. A bench-scale aerobic GSR was constructed and operated for over 450 days while treating simulated effluent from a mainstream anaerobic treatment process. The reactor was equipped with sensor-mediated control via DO and NH_4~+/NO_3~- sensors, and operated using both a DO setpoint and an ammonium-based aeration strategy. In addition, a one-dimensional multisubstrate and multispecies biofilm model was developed to describe and evaluate the preformance of the reactor. The experimental and modeling results show that aeration was minimized by maintaining intermittent aeration with very low bulk DO < 0.5 mg/L and holding ammonium concentration at or above 5 mg/L as N. This allowed for stable nitrogen removal by outselecting nitrite oxidizing bacteria.
机译:这项研究的目的是开发一种采用需氧颗粒污泥反应器(GSR)的传感器介导的控制策略,以实现主流能源高效脱氮。在处理来自主流厌氧处理工艺的模拟废水的同时,构建并运行了一个台式规模的好氧GSR,运行了450天以上。该反应堆通过DO和NH_4〜+ / NO_3〜-传感器进行了传感器介导的控制,并同时使用DO设定值和基于铵的曝气策略进行操作。此外,开发了一维多底物和多种生物膜模型来描述和评估反应器的性能。实验和模型结果表明,通过保持间歇通气来降低通气量,DO≤0.5 mg / L时非常低,氨氮的浓度保持在5 mg / L或高于5 mg / L。这可以通过选择亚硝酸盐氧化细菌来稳定去除氮。

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