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Performance and microbial ecology of the hybrid membrane biofilm process for concurrent nitrification and denitrification of wastewater

机译:混合膜生物膜工艺同时进行硝化反硝化废水的性能和微生物生态学

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We report on a novel process for total nitrogen (TN) removal, the hybrid membrane biofilm process (HMBP). The HMBP uses air-supplying hollow-fibre membranes inside an activated sludge tank, with suppressed aeration, to allow concurrent nitrification and denitrification. We hypothesised that a nitrifying biofilm would form on the membranes, and that the low bulk-liquid BOD concentrations would encourage heterotrophic denitrifying bacteria to grow in suspension. A nitrifying biofilm was initially established by supplying an influent ammonia concentration of 20 mgN/L. Subsequently, 120 mg/L acetate was added to the influent as BOD. With a bulk-liquid SRT of only 5 days, nitrification rates were 0.85 gN/m2 per day and the TN removal reached 75%. The biofilm thickness was approximately 500 mm. We used DGGE to obtain a microbial community fingerprint of suspended and attached growth, and prepared a clone library. The DGGE results, along with the clone library and operating data, suggest that nitrifying bacteria were primarily attached to the membranes, while heterotrophic bacteria were predominant in the bulk liquid. Our results demonstrate that the HMBP is effective for TN removal, achieving high levels of nitrification with a low bulk-liquid SRT and concurrently denitrifying with BOD as the sole electron donor.
机译:我们报告了一种用于总氮(TN)去除的新工艺,即混合膜生物膜工艺(HMBP)。 HMBP在活性污泥池内使用供气的中空纤维膜,同时抑制了曝气,以允许同时硝化和反硝化。我们假设在膜上会形成硝化生物膜,并且低的散装液体BOD浓度会促使异养反硝化细菌在悬浮液中生长。最初通过提供进水氨浓度为20 mgN / L来建立硝化生物膜。随后,将120 mg / L乙酸盐作为BOD加入进水。使用仅5天的散液SRT,硝化速率为每天0.85 gN / m2,总氮去除率达到75%。生物膜厚度为约500mm。我们使用DGGE获得了悬浮和附着生长的微生物群落指纹,并准备了一个克隆文库。 DGGE结果以及克隆文库和操作数据表明,硝化细菌主要附着在膜上,而异养细菌则主要存在于散装液体中。我们的结果表明,HMBP可有效去除TN,以低的散装液体SRT达到高水平的硝化作用,并同时以BOD作为唯一的电子供体进行反硝化。

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