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Development of a dynamic feeding strategy for continuous-flow aerobic granulation and nitrogen removal in a modified airlift loop reactor for municipal wastewater treatment

机译:在改进的气举回路反应器中开发用于连续流好氧制粒和脱氮的动态进料策略,以处理市政废水

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摘要

This study investigated the aerobic sludge granulation and nitrogen removal performance in a modified airlift loop reactor treating municipal wastewater under different operation conditions. Dynamic feeding and aeration control were applied to create feast/famine conditions to facilitate microbial aggregation. Experimental results demonstrated that aerobic granular sludge could be cultivated in continuous-flow reactors fed with an optimized dynamic feeding condition. Fresh granules sizing 0.4-0.6 mm were observed in the reactors after a 61-day operation, then turned to matured granules after another 33-day operation with a compact structure, a stable size of 2-4 mm, and a low SVI of -35 mL/g. Extracellular polymeric substances (EPS) analysis results showed that both EPS contents and the ratio of protein to polysaccharides increased with the granulation process, leading to an increase of cell hydrophobicity. Granular sludge exhibited a good nitrogen removal ability with a comparable level of specific nitrification rate and denitrification rate with those measured in state-of-the-art sequential batch reactors. Microbial population analysis showed an increase in the relative abundance of functional microbes, including Zoogloea, Nitrospira, Dechloromonas. and Thauera in the cultivated granules, suggesting a potentially crucial role of these microbes in sludge granulation and nitrogen removal. The dynamic feeding strategy and the reactor configuration are considered as critical factors for aerobic granulation under continuous-flow conditions for creating feast/famine conditions and allow sludge backflow without structure damage.
机译:这项研究调查了改进的气举式循环反应器在不同运行条件下处理城市废水的好氧污泥颗粒化和脱氮性能。应用动态饲喂和通气控制来创造盛宴/饥荒条件,以促进微生物聚集。实验结果表明,可在优化动态进料条件下连续流反应器中培养好氧颗粒污泥。经过61天的操作后,在反应器中观察到大小为0.4-0.6 mm的新鲜颗粒,然后经过33天的操作又变成了成熟的颗粒,其结构紧凑,尺寸稳定在2-4 mm,SVI低至- 35毫升/克。细胞外聚合物(EPS)的分析结果表明,EPS的含量和蛋白质与多糖的比例都随着制粒过程的增加而增加,从而导致细胞疏水性的增加。颗粒污泥表现出良好的脱氮能力,其比硝化率和反硝化率可与先进的连续式分批反应器相比。微生物种群分析显示,功能微生物的相对丰度有所增加,包括动物菌,硝化螺菌,脱氯藻。和沙乌拉菌在培养颗粒中的存在,表明这些微生物在污泥颗粒化和脱氮方面具有潜在的关键作用。动态进料策略和反应器配置被认为是连续流动条件下好氧造粒的关键因素,以创造盛宴/饥荒条件并允许污泥回流而不会破坏结构。

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  • 来源
    《The Science of the Total Environment》 |2020年第20期|1136764.1-1136764.11|共11页
  • 作者单位

    Research Centre of Environmental Microbial Resource Development and Application Engineering Research Institute of Tsinghua University in Shenzhen Guangdong 518000 China State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC) School of Environment Tsinghua University Beijing 100084 China;

    Shenzhen Qingyan Environment Technology Co. Ltd. Guangdong 518000 China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC) School of Environment Tsinghua University Beijing 100084 China;

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

    Aerobic granulation; Continuous-flow reactor; Dynamic feeding; Nitrogen removal;

    机译:好氧制粒;连续流反应器;动态进料;脱氮;

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