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A Comparative Study of the Bacterial Community in Denitrifying and Traditional Enhanced Biological Phosphorus Removal Processes

机译:反硝化和传统增强型生物除磷工艺中细菌群落的比较研究

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Denitrifying phosphorus removal is an attractive wastewater treatment process due to its reduced carbon source demand and sludge minimization potential. Two lab-scale sequencing batch reactors (SBRs) were operated in alternating anaerobic-anoxic (A-A) or anaerobic-oxic (A-O) conditions to achieve denitrifying enhanced biological phosphate removal (EBPR) and traditional EBPR. No significant differences were observed in phosphorus removal efficiencies between A-A SBR and A-O SBR, with phosphorus removal rates being 87.9% and 89.0% respectively. The community structures in denitrifying and traditional EBPR processes were evaluated by high-throughput sequencing of the PCR-amplified partial 16S rRNA genes from each sludge. The results obtained showed that the bacterial community was more diverse in A-O sludge than in A-A sludge. Taxonomy and beta-diversity analyses indicated that a significant shift occurred in the dominant microbial community in A-A sludge compared with the seed sludge during the whole acclimation phase, while a slight fluctuation was observed in the abundance of the major taxonomies in A-O sludge. One Dechloromonas-related OTU outside the 4 known Candidatus "Accumulibacter" clades was detected as the main OTU in A-A sludge at the stationary operation, while Candidatus "Accumulibacter" dominated in A-O sludge.
机译:脱氮除磷是一种有吸引力的废水处理工艺,因为它减少了碳源需求,并最大限度地减少了污泥。在交替的厌氧-缺氧(A-A)或厌氧-缺氧(A-O)条件下运行两个实验室规模的顺序批处理反应器(SBR),以实现反硝化增强的生物磷酸盐去除(EBPR)和传统的EBPR。 A-A SBR和A-O SBR之间的除磷效率没有显着差异,除磷率分别为87.9%和89.0%。通过高通量测序每个污泥中PCR扩增的部分16S rRNA基因,评估了反硝化和传统EBPR过程中的群落结构。获得的结果表明,A-O污泥中的细菌群落比A-A污泥中的细菌群落更加多样化。分类学和β多样性分析表明,与种子污泥相比,整个A-A污泥中A-A污泥的优势微生物群落发生了显着变化,而A-O污泥的主要分类法的丰度则略有波动。在静止操作中,在4个已知的假丝酵母“ Accumulibacter”进化枝以外的一个与Dechloromonas相关的OTU被检测为A-A污泥中的主要OTU,而假丝酵母“ Accumulibacter”在A-O污泥中占主导。

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