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Online oxidation control to maximize energy recovery and ensure year-round effluent quality

机译:在线氧化控制可最大程度地回收能量并确保全年出水水质

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Online measurement of oxygen uptake rates (OUR) can be utilized to control activated sludge. Modeling showed that this novel control strategy ensured year-round compliancy to total nitrogen discharge limits, contrary to mixed liquor and solids retention time control. In a pilot-scale high-rate contact-stabilization system, control based on online OUR instead of MLSS or SRT, successfully correlated with COD oxidation. At a vOUR setpoint of 22-24 mg O2 L-1 h-1, OUR control maintained a solids retention time (SRT) of 0.4 ± 0.2 days while preserving excellent bioflocculation. Approximately 55% of the incoming chemical oxygen demand (COD) was redirected and incorporated into the particulate COD fraction. Of the redirected COD, two thirds (66 ± 23%) was captured, resulting in 36% of the incoming COD sent to the digester. Controlling wasting rates to maintain a setpoint vOUR is an alternate approach for high-rate activated sludge system management.
机译:氧气吸收率(OUR)的在线测量可用于控制活性污泥。建模表明,与混合液和固体保留时间控制相反,这种新颖的控制策略可确保全年遵守总氮排放极限。在中试规模的高速率接触稳定系统中,基于在线OUR而不是MLSS或SRT的控制已成功与COD氧化相关。在vOUR设定值为22-24 mg O2 L-1 h-1时,OUR对照可保持0.4±0.2天的固体保留时间(SRT),同时保持出色的生物絮凝效果。大约55%的传入化学需氧量(COD)被重定向并合并到颗粒COD馏分中。在重定向的COD中,捕获了三分之二(66±23%),导致36%的传入COD发送到蒸煮器。控制浪费率以维持设定点vOUR是高速率活性污泥系统管理的另一种方法。

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