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Effects of Wash-Out Dynamics on Nitrifying Bacteria in Aerobic Granular Sludge During Start-Up at Gradually Decreased Settling Time

机译:在逐渐减少沉降时间的启动过程中,冲洗动力学对好氧颗粒污泥中硝化细菌的影响

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The aerobic granular sludge process is a promising technology for the removal of nutrients and organic contaminants from wastewater. However, a large amount of the sludge is often washed out during the start-up of granular reactors, which results in reduced process performance and a protracted start-up phase. In this study, the possibility of a rapid start-up of the nitrification process through a stepwise decrease of the settling time was investigated, and the bacterial population dynamics in two lab-scale sequencing batch reactors were studied. The results demonstrated that the stepwise decrease of the settling time enabled fast granulation and rapid start-up of the process. Small cores of granules were already observed after 10 days of operation, and the biomass was dominated by granules after 28 days. The removal of organic matter and ammonium was >95% after one day and 14 days, respectively. The bacterial community composition changed rapidly during the first 21 days, resulting in strongly reduced richness and evenness. The diversity increased at a later stage, and the bacterial community continued changing, albeit at a slower pace. The rate of the stepwise decrease in settling time strongly affected the abundance of nitrifying organisms, but not the general composition of the bacterial community. The results of this study support the idea that a stepwise decrease of the settling time is a successful strategy for the rapid start-up of aerobic granular sludge reactors.
机译:好氧颗粒污泥工艺是从废水中去除营养物和有机污染物的有前途的技术。但是,在粒状反应器启动期间,经常会洗掉大量污泥,这会导致工艺性能下降和启动阶段延长。在这项研究中,研究了通过逐步减少沉降时间来快速启动硝化过程的可能性,并研究了两个实验室规模的测序批量反应器中细菌的种群动态。结果表明,沉降时间的逐步减少可实现快速制粒和工艺的快速启动。手术10天后就已经观察到小颗粒的核,而28天后生物质以颗粒为主。 1天和14天后,有机物和铵的去除率分别> 95%。在最初的21天中,细菌群落组成迅速变化,导致丰富度和均匀度大大降低。多样性在后期增加,并且细菌群落继续变化,尽管速度较慢。沉降时间逐步减少的速率强烈影响硝化生物的数量,但不会影响细菌群落的总体组成。这项研究的结果支持以下想法:逐步减少沉降时间是快速启动好氧颗粒污泥反应器的成功策略。

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