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Monitoring of the microbial community of a sequencing batch reactor bioaugmented to improve its phosphorus removal capabilities

机译:监测分批批量反应器的微生物群落,该反应器经过生物强化以提高其除磷能力

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The acclimatisation of an activated sludge to enhanced biological phosphorus removal conditions was followed after and without bioaugmentation with a low amount of phosphorus-accumulating sludge. Phosphorus removal yields were monitored by conventional analytical methods and microbial communities evolutions were followed by a finger printing molecular technique (PCR-SSCP). While the benefit of the bioaugmentation seems real at the level of the reactor parameters, bioaugmentation speeded up the installation of good and stable phosphorus removal yield, the establishment of the inoculated microbial community in the bioaugmented reactor is still unclear. Both the bioaugmented and the control microbial communities evolved in a similar way to end up with apparently comparable populations. At the time of the experiment, the results suggest that the microbial community inoculated for the bioaugmentation did not establish in the reactor but compensated for phosphorus accumulation until the acclimatisation of an endogenous microbial community arose. [References: 17]
机译:在有少量磷积累污泥的生物强化之后和没有生物强化之后,进行活性污泥的适应化以提高生物除磷条件。用常规分析方法监测除磷产量,然后用指纹分子技术(PCR-SSCP)监测微生物群落的演变。尽管在反应器参数水平上生物强化的好处似乎是真实的,但是生物强化加快了良好且稳定的除磷产量的安装,但在生物强化反应器中建立接种微生物群落的机制仍不清楚。生物强化和控制微生物群落以相似的方式进化,最终形成了明显可比的种群。在实验时,结果表明,为生物增强而接种的微生物群落没有在反应器中建立,而是补偿了磷的积累,直到内生微生物群落适应为止。 [参考:17]

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