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Denitrifying capability and community dynamics of glycogen accumulating organisms during sludge granulation in an anaerobic-aerobic sequencing batch reactor

机译:厌氧-好氧顺序分批反应器污泥颗粒化过程中糖原累积生物的反硝化能力和群落动态

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摘要

Denitrifying capability of glycogen accumulating organisms (GAOs) has received great attention in environmental science and microbial ecology. Combining this ability with granule processes would be an interesting attempt. Here, a laboratory-scale sequencing batch reactor (SBR) was operated to enrich GAOs and enable sludge granulation. The results showed that the GAO granules were cultivated successfully and the granules had denitrifying capability. The batch experiments demonstrated that all NO3-N could be removed or reduced, some amount of NO2-N were accumulated in the reactor, and N2 was the main gaseous product. SEM analysis suggested that the granules were tightly packed with a large amount of tetrad-forming organisms (TFOs); filamentous bacteria served as the supporting structures for the granules. The microbial community structure of GAO granules was differed substantially from the inoculant conventional activated sludge. Most of the bacteria in the seed sludge grouped with members of Proteobacterium. FISH analysis confirmed that GAOs were the predominant members in the granules and were distributed evenly throughout the granular space. In contrast, PAOs were severely inhibited. Overall, cultivation of the GAO granules and utilizing their denitrifying capability can provide us with a new approach of nitrogen removal and saving more energy.
机译:糖原累积生物(GAOs)的反硝化能力在环境科学和微生物生态学中受到了极大的关注。将这种能力与颗粒工艺相结合将是一个有趣的尝试。在这里,实验室规模的分批反应器(SBR)进行了操作,以富集GAO,并使污泥颗粒化。结果表明,GAO颗粒得到了成功的培养,具有反硝化能力。间歇实验表明,所有NO3 - -N均可被去除或还原,反应器中积累了一定量的NO2 - -N,其中N2是主要的气态产物。 。扫描电镜分析表明,颗粒中紧密堆积着大量的四分体形成生物(TFO)。丝状细菌充当颗粒的支撑结构。 GAO颗粒的微生物群落结构与接种常规活性污泥有很大不同。种子污泥中的大多数细菌与变形杆菌属在一起。 FISH分析证实,GAO是颗粒中的主要成员,并且均匀分布在整个颗粒空间中。相反,PAO被严重抑制。总体而言,GAO颗粒的培养和利用其反硝化能力可以为我们提供一种脱氮和节省更多能源的新方法。

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