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Impact on nitrifiers of full-scale bioaugmentation

机译:对全规模生物沉积的影响

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Nitrifiers are the slowest growing bacteria used in conventional biological wastewater treatment. Furthermore, their growth rate is seriously hampered by low temperature. As a result, the volume needed for nitrification dominates the volume of the biological reactors at a wastewater treatment plant. As a way of enhancing nitrification and reducing this volume, bioaugmentation can be used. Nitrifiers from a side-stream plant can be inoculated to the mainstream process, which is thereby boosted. The effect of bioaugmentation can be measured in different ways. This full-scale study focuses on the effect of bioaugmentation from a microbial point of view by using 16S rRNA amplicon sequencing. The study reveals how bioaugmentation increases the diversity of nitrifiers in the mainstream process and in the side-stream plant; that the abundance of nitrifiers is increased in the mainstream process; the interaction between nitrifiers from the side-stream plant and mainstream process; and the effect of bioaugmentation on nitrifying genera and species over time. To our knowledge, this detailed microbial information on nitrifying species during a full-scale bioaugmentation study has not been presented before.
机译:氮因素是常规生物废水处理中使用的最慢的生长细菌。此外,它们的增长率受到低温严重阻碍。结果,硝化所需的体积在废水处理厂占据生物反应器的体积。作为增强硝化和减少该体积的一种方式,可以使用生物沉积。可以接种来自侧流植物的氮因子接种到主流过程中,从而提升。生物沉积的效果可以以不同的方式测量。这种全规模研究专注于通过使用16S rRNA扩增子测序从微生物观点的生物沉积点的影响。该研究揭示了生物化如何增加主流过程中氮杂物的多样性和侧流植物;在主流过程中,氮化剂的丰度增加;侧流植物和主流过程中氮代动率之间的相互作用;生物沉积对硝化白身和物种随时间的影响。据我们所知,这种详细的关于硝化物种在全规模生物沉默研究中的微生物信息尚未提出。

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