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Investigation of the process stability of different anammox configurations and assessment of the simulation validity of various anammox-based kinetic models

机译:不同厌氧毒素配置的过程稳定性的研究及各种厌氧基动力学模型的模拟有效性评估

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Over the last 30 years, the successful implementation of the anammox process has attracted research interest from all over the world. Various reactor configurations were investigated for the anammox process. However, the construction of the anammox process is a delicate topic in regards to the high sensitivity of the biological reaction. To better understand the effects of configurations on the anammox performance, process-kinetic models and activity kinetic models were critically overviewed, respectively. A significant difference in the denitrification capabilities was observed even with similar dominated functional species of anammox with different configurations. Although the kinetic analysis gained insight into the feasibility of both batch and continuous processes, most models were often applied to match the kinetic data in an unsuitable manner. The validity assessment illustrated that the Grau second-order model and Stover–Kincannon model were the most appropriate and shareable reactor-kinetic models for different anammox configurations. This review plays an important role in the anammox process performance assessment and augmentation of the process control.
机译:在过去的30年里,厌氧过程的成功实施吸引了来自世界各地的研究兴趣。研究了各种反应器配置,用于厌氧过程。然而,厌氧过程的构建是对生物反应的高敏感性的微妙话题。为了更好地了解配置对anAmamx性能的影响,过程 - 动力学模型和活性动力学模型分别受到严重概括。即使具有不同配置的类似厌氧毒性的厌氧功能,也观察到反硝化能力的显着差异。虽然动力学分析获得了对批量和连续过程的可行性的洞察,但大多数模型通常被应用于以不合适的方式匹配动力学数据。有效性评估说明了格劳二阶模型和橄榄球 - kincannon模型是不同anammox配置的最合适和可共同的反应堆动态模型。本次审查在anammox流程性能评估和增强过程控制中起着重要作用。

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