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首页> 外文期刊>Bioprocess and Biosystems Engineering >Development of mechanistically based model for simulating soluble microbial products generation in an aeratedon-aerated SBR
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Development of mechanistically based model for simulating soluble microbial products generation in an aeratedon-aerated SBR

机译:基于机械的模型的模拟,用于在充气/非充气SBR中模拟可溶性微生物产物的产生

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摘要

Soluble microbial products (SMPs) are considered as the main organic components in wastewater treatment plant effluent from biological wastewater treatment systems. To investigate and explore SMP metabolism pathway for further treatment and control, two innovative mechanistically based activated sludge models were developed by extension of activated sludge model no.3 (ASM3). One was the model by combining SMP formation and degradation (ASM3-SMP model) processes with ASM3, and the other by combining both SMP and simultaneous substrate storage and growth (SSSG) mechanisms with ASM3 (SSSG-ASM3-SMP model). The detailed schematic modification and process supplements were introduced for comprehensively understanding all the mechanisms involved in the activated sludge process. The evaluations of these two models were demonstrated by a laboratory-scale sequencing batch reactor (SBR) operated under aeratedon-aerated conditions. The simulated and measured results indicated that SMP comprised about 83% of total soluble chemical oxygen demand (SCOD) in which biomass-associated products (BAPs) were predominant compared with utilization-associated products (UAPs). It also elucidated that there should be a minimum SMP value as the reactive time increases continuously and this conclusion could be used to optimize effluent SCOD in activated sludge processes. The comparative results among ASM3, ASM3-SMP and SSSG-ASM3-SMP models and the experimental measurements (SCOD, ammonia and nitrate nitrogen) showed clearly the best agreement with SSSG-ASM3-SMP simulation values (R = 0.993), strongly suggesting that both SMP formation and degradation and SSSG mechanisms are necessary in biologically activated sludge modeling for municipal wastewater treatment.
机译:可溶性微生物产品(SMPs)被视为生物废水处理系统产生的废水处理厂废水中的主要有机成分。为了研究和探索SMP代谢途径以进一步治疗和控制,通过扩展3号活性污泥模型(ASM3),开发了两个基于机械原理的创新性活性污泥模型。一种是通过将SMP的形成和降解过程(ASM3-SMP模型)与ASM3结合在一起的模型,另一种是通过将SMP和同时基质存储和生长(SSSG)机制与ASM3结合起来的模型(SSSG-ASM3-SMP模型)。引入了详细的原理图修改和工艺补充,以全面了解活性污泥工艺中涉及的所有机制。这两种模型的评估通过在充气/非充气条件下运行的实验室规模的分批批量反应器(SBR)进行证明。模拟和测量结果表明,与利用相关产品(UAP)相比,SMP占总可溶性化学需氧量(SCOD)的83%,其中生物质相关产品(BAP)占主导地位。它还阐明,随着反应时间的不断增加,应该有一个最小的SMP值,该结论可用于优化活性污泥工艺中的污水SCOD。 ASM3,ASM3-SMP和SSSG-ASM3-SMP模型之间的比较结果以及实验测量值(SCOD,氨水和硝酸盐氮)清楚地表明与SSSG-ASM3-SMP模拟值之间的最佳吻合(R = 0.993),强烈表明SMP的形成和降解以及SSSG机理对于城市污水处理的生物活性污泥建模都是必需的。

著录项

  • 来源
    《Bioprocess and Biosystems Engineering》 |2011年第9期|p.1151-1161|共11页
  • 作者单位

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, College of Resource and Environmental Engineering, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China,Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China;

    School of Environmental Science and Spatial Informatics, China University of Mining and Technology, South Sanhuan Road, Nanhu Campus, Xuzhou 221116, China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, College of Resource and Environmental Engineering, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, College of Resource and Environmental Engineering, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China;

    State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, College of Resource and Environmental Engineering, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China,Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, No. 130, Mei Long Road, Shanghai 200237, China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    activated sludge model; simultaneous storage and growth process; soluble microbial products; wastewater treatment;

    机译:活性污泥模型同步存储和增长过程;可溶性微生物产品;废水处理;

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