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Nutrient removal performance and microbial community analysis of a combined ABR-MBR (CAMBR) process

机译:ABR-MBR(CAMBR)组合工艺的营养去除性能和微生物群落分析

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In order to reduce the external nutrient loads in Lake Taihu, it was found that controlling nutrient input is the most effective way of reducing the risk of blooms. In this regard, nutrient removal by using a combined process consisting of an anaerobic baffled reactor and an aerobic membrane bioreactor for municipal wastewater treatment was investigated. The results demonstrated that hydraulic retention time, recycle ratio and dissolved oxygen had a negligible effect on the removal efficiencies of chemical oxygen demand and ammonia. Optimal operation conditions with a hydraulic retention time of 7.5 h at a recycle ratio of 200% and dissolved oxygen of 3 mg/L was shown to achieve higher quality effluent with chemical oxygen demand, ammonium, total nitrogen and total phosphorus of 26, 0.5, 10.5 and 0.4 mg/L, respectively. Analysis of fluorescence in situ hybridization showed that the specialized microorganisms, including nitrifying bacteria (ammonia-oxidizing bacteria and nitrite-oxidizing bacteria), and phosphorus accumulating organisms, were enriched in this process. The profile of nitrite-oxidizing bacteria was similar to that of ammonia-oxidizing bacteria. The nitrifying bacterial population had a good correlation with nitrogen removal efficiency. A good correlation was also observed between phosphorus removal performance and the percentage of phosphorus accumulating organisms present in the sludge.
机译:为了减少太湖的外部养分负荷,人们发现控制养分输入是减少开花风险的最有效方法。在这方面,研究了通过使用厌氧折流板反应器和好氧膜生物反应器组成的联合工艺去除营养物,以处理市政废水。结果表明,水力停留时间,循环比和溶解氧对化学需氧量和氨的去除效率的影响可忽略不计。最佳的操作条件是,在200%的循环比下,水力停留时间为7.5 h,溶解氧为3 mg / L,可实现更高质量的废水,其中化学需氧量,铵,总氮和总磷分别为26、0.5,分别为10.5和0.4 mg / L。荧光原位杂交分析表明,在此过程中富集了包括硝化细菌(氨氧化细菌和亚硝酸盐氧化细菌)和磷积累生物在内的特殊微生物。亚硝酸盐氧化细菌的概况与氨氧化细菌的概况相似。硝化细菌种群与脱氮效率具有良好的相关性。还观察到除磷性能与污泥中磷累积生物的百分比之间存在良好的相关性。

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