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Microbial ecological processes in MBBR biofilms for biological phosphorus removal from wastewater

机译:MBBR生物膜中的微生物生态过程进行废水中的生物磷去除

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摘要

Phosphorus is both a major environmental pollutant and a limiting resource. Although enhanced biological phosphorus removal (EBPR) is used worldwide for phosphorus removal, the standard activated sludge-based EBPR process shows limitations with stability and efficiency. Recently, a new EBPR moving bed biofilm reactor (MBBR) process has been developed at HIAS (Hamar, Norway), enabling a phosphorus removal stability above 90% during a whole year cycle. To increase the knowledge of the HIAS (MBBR) process the aim of the current work was to characterize the MBBR microbiota and operational performance weekly for the operational year. Surprisingly, we found a major succession of the microbiota, with a five-fold increase in phosphorus accumulating organisms (PAOs), and major shifts in eukaryote composition, despite a stable phosphorus removal. Temperature was the only factor that significantly affected both phosphorus removal and the microbiota. There was a lower phosphor removal during the winter, coinciding with a higher microbiota alpha diversity, and a lower beta diversity. This differs from what is observed for activated sludge based EBPR. Taken together, the knowledge gained from the current microbiota study supports the efficiency and stability of MBBR-based systems, and that knowledge from activated sludge-based EBPR approaches cannot be translated to MBBR systems.
机译:磷是一个主要的环境污染物和限制资源。虽然全世界使用增强的生物磷去除(EBPR)进行磷去除,但是标准活性污泥的EBPR方法显示了稳定性和效率的限制。最近,在HIAS(挪威)开发了一种新的EBPR移动床Biofilm反应器(MBBR)过程,在全年周期期间,在90%以上的磷去除稳定性方面的磷去除稳定性。为了提高HIAS(MBBR)的知识,目前工作的目的是每周表征MBBR微生物群和运营年度的业务表现。令人惊讶的是,我们发现了微生物群的主要连续,磷积聚生物(PAOS)增加了五倍,并且尽管去除了稳定的磷,但真核组合物的重大变化。温度是显着影响磷去除和微生物酵母的唯一因素。冬季磷光体较低,与较高的微生物群α多样性相吻合,以及较低的β多样性。这与基于活性污泥的EBPR观察到的不同。从目前的Microbiota研究中获得的知识支持基于MBBR的系统的效率和稳定性,并且从基于激活的污泥的EBPR方法的知识不能翻译为MBBR系统。

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