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Long-term formation of microbial products in a sequencing batch reactor

  • Bing Jie Ni
  • , Bruce E. Rittmann
  • , Fang Fang
  • , Juan Xu
  • , Han Qing Yu*
  • *此作品的通讯作者
  • University of Science and Technology of China
  • Arizona State University

科研成果: 期刊稿件文章同行评审

摘要

Activated sludge in a sequencing batch reactor (SBR) is subjected to alternating feast-and-famine conditions, which may result in the enhanced production of microbial products: extracellular polymeric substances (EPS), soluble microbial products (SMP), and internal storage products (XSTO). In this work, the long-term formation of these three microbial products by activated sludge in an SBR is investigated using an expanded unified model with a parallel experimental study. We also use the model to compare the impacts in an SBR to those in a continuous-flow activated sludge system. The model captures all experimental trends for all components with solids retention time (SRT) for global steady state and within a cycle. At an SRT of 20 days, the active microorganisms constitute about 28% of the mixed liquor volatile suspended solids (MLVSS); the remaining biomass is comprised of residual inert biomass (XI) of 40%, EPS of 31%, and XSTO of ∼1%. The active biomass becomes a smaller fraction with the increasing SRT, while the inert biomass becomes increasingly dominant. For soluble components, effluent chemical oxygen demand (COD) is dominated by SMP, which varies to some degree in a cycle, peaking as external substrate becomes depleted. Within the SBR cycle, external substrate (S) declines strongly in the first part of the cycle, and SMP shows a small peak at the time of S depletion. XSTO is the only biomass component that varies significantly during the cycle. It peaks at the time that the input substrate (S) is depleted. Simulation for a continuous-flow activated sludge system and comparison with an SBR reveals that the constant " famine" conditions of the continuous system lead to lower EPS and XSTO, but higher MLVSS and XI.

源语言英语
页(从-至)3787-3796
页数10
期刊Water Research
44
13
DOI
出版状态已出版 - 7月 2010
已对外发布

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