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Identification of trigger factors selecting for polyphosphate- and glycogen-accumulating organisms in aerobic granular sludge sequencing batch reactors

机译:确定好氧颗粒污泥测序间歇反应器中聚磷酸盐和糖原积累生物的触发因素选择

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摘要

Nutrient removal performances of sequencing batch reactors using granular sludge for intensified biological wastewater treatment rely on optimal underlying microbial selection. Trigger factors of bacterial selection and nutrient removal were investigated in these novel biofilm systems with specific emphasis on polyphosphate- (PAO) and glycogen-accumulating organisms (GAO) mainly affiliated with Accumulibacter and Competibacter, respectively. In a first dynamic reactor operated with stepwise changes in concentration and ratio of acetate and propionate (Ac/Pr) under anaerobic feeding and aerobic starvation conditions and without wasting sludge periodically, propionate favorably selected for Accumulibacter (35% relative abundance) and stable production of granular biomass. A Plackett-Burman multifactorial experimental design was then used to screen in eight runs of 50 days at stable sludge retention time of 15 days for the main effects of COD concentration, Ac/Pr ratio, COD/P ratio, pH, temperature, and redox conditions during starvation. At 95% confidence level, pH was mainly triggering direct Accumulibacter selection and nutrient removal. The overall PAO/GAO competition in granular sludge was statistically equally impacted by pH, temperature, and redox factors. High Accumulibacter abundances (30-47%), PAO/GAO ratios (2.8-8.4), and phosphorus removal (80-100%) were selected by slightly alkaline (pH > 7.3) and lower mesophilic (<20 ℃) conditions, and under full aeration during fixed 2-h starvation. Nitrogen removal by nitrification and denitrification (84-97%) was positively correlated to pH and temperature. In addition to alkalinity, non-limited organic conditions, 3-carbon propionate substrate, sludge age control, and phase length adaptation under alternating aerobic-anoxic conditions during starvation can lead to efficient nutrient-removing granular sludge biofilm systems.
机译:使用颗粒污泥强化生物废水处理的顺序批处理反应器的营养去除性能取决于最佳的基础微生物选择。在这些新颖的生物膜系统中,研究了细菌选择和营养去除的触发因素,特别着重于分别与Accumulibacter和Competibacter相关的多磷酸盐-(PAO)和糖原累积性生物(GAO)。在第一个动态反应器中,在厌氧进料和好氧饥饿条件下,乙酸盐和丙酸盐(Ac / Pr)的浓度和比例逐步变化,并且不会定期浪费污泥,丙酸的丙酸菌(相对丰度为35%)稳定生产且稳定生产颗粒状生物质。然后使用Plackett-Burman多因素实验设计在15天的稳定污泥保留时间中进行了八次连续的,为期50天的筛选,以了解COD浓度,Ac / Pr比,COD / P比,pH,温度和氧化还原的主要影响饥饿期间的条件。在95%的置信水平下,pH值主要触发直接的累积细菌选择和营养去除。 pH,温度和氧化还原因子在统计学上均等地影响颗粒污泥中整个PAO / GAO竞争。在弱碱性(pH> 7.3)和中等嗜温(<20℃)条件下,选择了高积累度细菌(30-47%),PAO / GAO比(2.8-8.4)和磷去除(80-100%),以及在固定的2小时饥饿中处于全曝气状态。通过硝化和反硝化去除的氮(84-97%)与pH和温度呈正相关。除碱度外,在饥饿期间非限制性的有机条件,3-碳丙酸酯基质,污泥年龄控制以及在交替有氧-缺氧条件下的相长适应可以导致有效的去除营养的颗粒污泥生物膜系统。

著录项

  • 来源
    《Water Research》 |2013年第19期|7006-7018|共13页
  • 作者单位

    Ecole Polytechnique Fede'rale de Lausanne, School of Architecture, Civil and Enuironmental Engineering, Institute of Environmental Engineering, Laboratory for Environmental Biotechnology, Lausanne, Switzerland;

    Ecole Polytechnique Fede'rale de Lausanne, School of Architecture, Civil and Enuironmental Engineering, Institute of Environmental Engineering, Laboratory for Environmental Biotechnology, Lausanne, Switzerland;

    Ecole Polytechnique Federate de Lausanne, Doctoral School, Lausanne, Switzerland;

    Ecole Polytechnique Fede'rale de Lausanne, School of Architecture, Civil and Enuironmental Engineering, Institute of Environmental Engineering, Laboratory for Environmental Biotechnology, Lausanne, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological wastewater treatment; Nutrient removal; Aerobic granular sludge; PAO and GAO selection; Plackett-Burman multifactorial; design;

    机译:生物废水处理;营养去除;好氧颗粒污泥;PAO和GAO的选择;Plackett-Burman多因素;设计;
  • 入库时间 2022-08-17 13:45:43

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