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Improving biological phosphorus removal in membrane bioreactors - a pilot study

机译:改善膜生物反应器中的生物磷去除 - 试验研究

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With increasing water reuse applications and possible stringent regulations of phosphorus content in secondary and tertiary effluent discharge in Florida, USA, alternative technologies beyond conventional treatment processes require implementation to achieve low phosphorus (P) and nitrogen (N) concentrations. A pilot scale membrane bioreactor (MBR) system, operated in Florida, adopted the University of Cape Town (UCT) biological process for the treatment of domestic wastewater. The system operated for 280 days at a wastewater treatment facility with total hydraulic retention time (HRT) of 7 h and sludge retention time (SRT) of 20 days. Operating conditions were controlled to maintain specific dissolved oxygen (DO) concentrations in the reactors, operate at suitable return activated sludge (RAS) rates and to waste from the appropriate reactor. This process favored biological phosphorus removal and achieved 94.1% removal efficiency. Additionally, chemical oxygen demand (COD) and N removal were achieved at 93.9% and 86.6%, respectively. Membrane operation and maintenance did not affect the biological P removal performance but enhanced the process given the different operating requirements compared to that required with the conventional UCT process alone. Conclusively, the result of the pilot study demonstrated improvement in biological phosphorus removal. The UCT-MBR process tested achieved average effluent nitrogen and phosphorus concentrations of 5 mg/L as N and 0.3 mg/L as P.
机译:随着水重用应用的增加以及佛罗里达州佛罗里达州的二级和叔污水排放中可能严格的磷含量规定,常规治疗方法之外的替代技术需要实施以实现低磷(P)和氮(N)浓度。在佛罗里达州运营的试验规模膜生物反应器(MBR)系统采用了开普敦大学(UCT)生物工艺,用于治疗国内废水。该系统在污水处理设施下运行280天,液压保留时间(HRT)为7小时,污泥保留时间(SRT)为20天。控制在反应器中保持特定溶解的氧(DO)浓度的操作条件,在合适的返回活性污泥(RAS)速率下操作并从适当的反应器中浪费。该过程有利于生物磷去除,取得了94.1%的去除效率。此外,分别以93.9%和86.6%实现化学需氧量(COD)和N去除。膜操作和维护不影响生物P拆卸性能,而是通过单独使用传统的UCT方法来增强该过程。结论,试点研究的结果表明了生物磷去除的改善。 UCT-MBR工艺测试的平均污水氮和磷浓度为5 mg / L,为N和0.3 mg / L.

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