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Bacterial community structures in MBRs treating municipal wastewater: Relationship between community stability and reactor performance

机译:MBR处理城市污水中的细菌群落结构:群落稳定性与反应堆性能之间的关系

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Bacterial community structures in pilot-scale conventional membrane bioreactors (CMBRs) and hybrid MBRs (HMBRs) which were combined with pre-coagulation/sedimentation were analyzed by polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) and fluorescence in situ hybridization (FISH) techniques. The results were compared with the community structure in a full-scale activated sludge (AS) process treating the same municipal wastewater. The Dice index (Cs) of similarity analysis of DGGE banding patterns demonstrated that the microbial community in AS was more similar to those in CMBR1 and CMBR2 than HMBR1 and HMBR2. This suggested that influent wastewater composition had a larger impact on bacterial community structures. Long-term community structure changes in the HMBRs and CMBRs were monitored and analyzed over 240 days by Non-metric multidimensional scaling (NMDS) analysis of DGGE banding patterns. The NMDS analysis revealed that both HMBRs and CMBRs had marked changes in community structures during the first about 100 days. Thereafter the perpetual fluctuations of bacterial community structures were observed in both HMBRs and CMBRs, even though the stable MBR performances (the performance was measured as membrane permeability and removal of dissolved organic carbon, DOC) were achieved. These results suggest that not only the stability, but also the adequate dynamics ("flexibility") of the bacterial community structure are important for the stable performance of the MBRs treating complex municipal wastewater.
机译:通过聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)和荧光原位杂交技术分析中试规模的常规膜生物反应器(CMBRs)和杂化MBR(HMBRs)与预混凝/沉淀相结合的细菌群落结构。鱼)技术。将结果与处理相同市政废水的全规模活性污泥(AS)工艺中的群落结构进行了比较。 DGGE谱带相似度分析的Dice指数(Cs)表明,AS中的微生物群落比HMBR1和HMBR2与CMBR1和CMBR2中的微生物群落更为相似。这表明进水废水成分对细菌群落结构有较大影响。 HMBR和CMBR中的长期群落结构变化通过DGGE谱带模式的非度量多维标度(NMDS)分析在240天内进行监测和分析。 NMDS分析显示,HMBR和CMBR在最初的约100天中均具有明显的群落结构变化。此后,即使获得了稳定的MBR性能(性能以膜渗透性和溶解性有机碳,DOC的去除来衡量),在HMBR和CMBR中都观察到了细菌群落结构的永久波动。这些结果表明,不仅细菌群落结构的稳定性,而且其适当的动力学(“柔韧性”)对于MBR处理复杂市政废水的稳定性能也很重要。

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