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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Enhanced biological phosphorus and nitrogen removal using a sequencing anoxic/anaerobic membrane bioreactor (SAM) process
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Enhanced biological phosphorus and nitrogen removal using a sequencing anoxic/anaerobic membrane bioreactor (SAM) process

机译:使用顺序缺氧/厌氧膜生物反应器(SAM)工艺增强生物除磷和除氮

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摘要

The innovative process SAM (sequencing anoxic/anaerobic membrane bioreactor) was developed to enhance biological phosphorus removal (EBPR), and its performance was investigated. A laboratory-scale experiment was performed to treat the household wastewater including toilet-flushing water. The aerobic zone with the submerged membrane was continuously aerated for nitrification and phosphorous uptake as well as fouling control. The mixed liquor was recycled from the aerobic zone to the anoxic/anaerobic sequencing zone intermittently to alternate the anoxic conditions for denitrification and anaerobic conditions for phosphorus release. During the operation, the flux was maintained almost constant at 10 L/m~2h (30 L/d). The modified Luzack-Ettinger (MLE) type MBR process, in which the mixed liquor was recycled continuously from aerobic zone to anoxic zone, was also introduced to compare with the SAM process. The phosphorous removal was much better in the SAM process, yielding 93% removal efficiency. By supplying strict anaerobic conditions without an internal recycle, the phosphorus release was induced in a significant amount, resulting in excellent uptake of phosphorus in the aerobic zone. The nitrogen removal efficiency of the SAM was about 60%, which was slightly lower than that of the MEL-type MBR process. However, it should be noted that the hydraulic retention time of the SAM process in the anoxic condition was 2.3 times shorter than that of MLE-type MBR process.
机译:开发了创新工艺SAM(测序缺氧/厌氧膜生物反应器)来增强生物除磷(EBPR),并对其性能进行了研究。进行了实验室规模的实验,以处理包括厕所冲洗水在内的家庭废水。对带有浸没膜的好氧区进行连续充气,以进行硝化和磷的吸收以及结垢控制。混合液间歇地从需氧区循环到缺氧/厌氧测序区,以交替改变脱氧的缺氧条件和释放磷的厌氧条件。在操作过程中,通量几乎保持恒定在10 L / m〜2h(30 L / d)。还介绍了改进的Luzack-Ettinger(MLE)型MBR工艺,其中混合液从好氧区连续循环到缺氧区,与SAM工艺进行了比较。在SAM工艺中,磷的去除效果要好得多,去除效率达到93%。通过提供严格的厌氧条件而不进行内部循环,可大量诱导磷的释放,从而导致好氧区磷的吸收极好。 SAM的脱氮效率约为60%,略低于MEL型MBR工艺的脱氮效率。但是,应注意的是,在缺氧条件下,SAM工艺的水力停留时间比MLE型MBR工艺的水力停留时间短2.3倍。

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