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Effect of different operational modes on the performance of granular sludge in continuous-flow systems and the successions of microbial communities

机译:不同操作模式对连续流动系统颗粒污泥性能的影响及微生物群落的演替

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摘要

Continuous flow reactors with time intermittent operational (TIO) mode and spatial intermittent operational (SIO) mode were operated to evaluate the effects of operational modes on the removal performances, the characteristics of granules and the dynamics of microbial communities in simultaneous nitrification, denitrification and phosphorus removal (SNDPR) granular system. The results showed that the removal efficiency of TP, TN were 81.3%, 86.7% under TIO mode, and 70.6%, 77.4% under SIO mode, respectively. Meanwhile, the PN and value of PN/PS in SIO were higher than those in TIO. Besides, results of high-throughput pyrosequencing illustrated that the combination of filamentous archaea (Methanothrix) and filamentous bacteria (Thiothrix) had resulted in the increase of EPS and SVI under SIO mode. Finally, functional bacterial and archaeal species, involving HMA, AMA, AOA, DPAOs etc., were identified to reveal the effects of operational modes on the mechanism of nutrients removal in granular SNDPR continuous-flow system.
机译:运行连续流量反应器与时间间歇运算(TIO)模式和空间间歇性操作(SIO)模式进行操作,以评估操作模式对去除性能的影响,颗粒的特征和微生物群落同时硝化,脱氮和磷的微生物群落的动态去除(SNDPR)颗粒系统。结果表明,在TiO模式下,TP,TN的去除效率分别为81.3%,86.7%,分别为70.6%,77.4%。同时,SiO中PN / PS的PN和值高于TIO中的PN和值。此外,高通量焦点测序的结果表明,丝状古物(甲蛋白纤维纤西)和丝状细菌(Thiothrix)的组合导致SIO模式下的EPS和SVI的增加。最后,鉴定了涉及HMA,AMA,AOA,DPAOS等的功能性细菌和古物种,以揭示操作模式对粒状SNDPR连续流动系统中营养成分机制的影响。

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