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Research on rapid cultivation of aerobic granular sludge (AGS) with different feast-famine strategies in continuous flow reactor and achieving high-level denitrifkation via utilization of soluble microbial product (SMP)

机译:连续流动反应堆中不同盛宴策略快速培养的研究,通过可溶性微生物产品(SMP)利用实现高级别脱氮

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摘要

The mixture of partial AGS and flocculent sludge in continuous flow reactors were operated with periodic famine (PF) strategy and continuous feast (CF) strategy to reveal the impact of the feast-famine strategies on cultivation of AGS and the dynamics of microbial communities. The experimental results showed that the mature AGS were cultivated with PF and CF strategy on the 31st and the 71st days respectively, which was the result of good extracellular polymeric substance (EPS) secretion with PF strategy. It could accelerate the formation of microbial aggregates due to the conditions of periodic famine. High-level denitrification with PF strategy via utilization of SMP was examined by EEM-PARAFAC on cycle test. The high-throughput pyrosequencing showed that the dominant bacteria with PF strategy involved functional bacteria of nutrient removal and EPS secreting bacteria, while the dominant bacteria were fast-growing heterotrophic organisms with CF strategy.
机译:连续流动反应器中的部分AGS和絮凝污泥的混合物用周期性饥荒(PF)策略和连续宴会(CF)策略进行操作,以揭示盛宴 - 饥荒策略对AGS培养的影响和微生物社区的动态。 实验结果表明,在第31天和第71天的PF和CF策略中培养了成熟AG,其是具有PF策略的良好细胞外聚合物物质(EPS)分泌的结果。 由于周期性饥荒的条件,它可以加速形成微生物聚集体的形成。 通过EEM-PARAFAC在循环试验中检查通过使用SMP的PF策略的高级脱氮。 高通量焦磷酸化表明,具有PF策略的显性细菌涉及营养去除和EPS分泌细菌的功能细菌,而显性细菌是具有CF策略的快速增长的异养生物。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|147237.1-147237.12|共12页
  • 作者单位

    Key Laboratory of Water Science and Water Environment Recovery Engineering. Beijing University of Technology Beijing 100123 China;

    Key Laboratory of Water Science and Water Environment Recovery Engineering. Beijing University of Technology Beijing 100123 China;

    Key Laboratory of Water Science and Water Environment Recovery Engineering. Beijing University of Technology Beijing 100123 China;

    Key Laboratory of Water Science and Water Environment Recovery Engineering. Beijing University of Technology Beijing 100123 China State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology Harbin 150090 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aerobic granular sludge; Continuous flow reactors; Feast and famine; Rapid cultivation; SMP;

    机译:有氧颗粒污泥;连续流量反应器;盛宴和饥荒;快速培养;SMP.;

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