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Simulation of Two-Stage Anaerobic Digestion Using Extended ADM1 Model

机译:使用扩展的ADM1模型模拟两阶段厌氧消化

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摘要

The aim of this study was to build a competent process model for the simulation of different forms of a two-stage anaerobic digestion systems that can support previous experimental studies conducted on anaerobic two-stage digestion of sewage sludge. The MATLAB model is a modification of the single-stage extended ADM1 model, built in a previous study by Zhang et al, to simulate a two stage anaerobic digestion system. The modified ADM1 model was implemented for batch-fed and continuous mode systems and the efficiency of the model was evaluated. The model was also tested for 4 configurations based on the thermophilic and mesophilic temperature ranges and the most effective configuration was ascertained for the batch-fed and continuous mode scenarios. The simulation of the thermophilic and mesophilic conditions was performed through the estimation of the appropriate parameters for each temperature condition from literature and by the use of a manual parameter estimation method for the identification of the most sensitive parameters. The accuracy of the model was then evaluated by comparison with experimental results provided in literature. The model was able to predict the dynamic behavior of two-stage digestion process reasonably well and the simulation results agreed fine with the two-stage reaction process described in previous literature. The model enabled the possible identification of the optimum operating conditions for both the batch--fed and continuous mode two-stage anaerobic bioreactor systems.
机译:这项研究的目的是建立一个能胜任的过程模型,用于模拟不同形式的两阶段厌氧消化系统,以支持先前对污水污泥进行厌氧两阶段消化的实验研究。 MATLAB模型是对单阶段扩展ADM1模型的修改,该模型在Zhang等人的先前研究中构建,用于模拟两阶段厌氧消化系统。修改后的ADM1模型适用于批处理和连续模式系统,并评估了模型的效率。还根据嗜热和中温温度范围对模型进行了4种配置的测试,对于分批喂料和连续模式方案,确定了最有效的配置。嗜热和中温条件的模拟是通过从文献中估计每种温度条件的适当参数并使用手动参数估计方法来识别最敏感的参数来进行的。然后通过与文献中提供的实验结果进行比较来评估模型的准确性。该模型能够较好地预测两阶段消化过程的动力学行为,并且模拟结果与先前文献中所述的两阶段反应过程吻合良好。该模型使得可以确定分批进料和连续模式两级厌氧生物反应器系统的最佳操作条件。

著录项

  • 作者

    Gangavarapu, Pranathi.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Chemical engineering.;Environmental science.
  • 学位 M.S.
  • 年度 2017
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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