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Modelling anaerobic, aerobic and partial nitritation-anammox granular sludge reactors - A review

机译:厌氧,好氧和部分硝化-厌氧颗粒污泥反应器建模-综述

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摘要

Wastewater treatment processes with granular sludge are compact and are becoming increasingly popular. Interest has been accompanied by the development of mathematical models. This contribution simultaneously reviews available models in the scientific literature for anaerobic, aerobic and partial nitritation-anammox granular sludge reactors because they comprise common phenomena (e.g. liquid, gas and granule transport) and thus pose similar challenges. Many of the publications were found to have no clearly defined goal. The importance of a goal is stressed because it determines the appropriate model complexity and helps other potential users to find a suitable model in the vast amount of literature. Secondly, a wide variety was found in the model features. This review explains the chosen modelling assumptions based on the different reactor types and goals wherever possible, but some assumptions appeared to be habitual within fields of research, without clear reason. We therefore suggest further research to more clearly define the range of operational conditions and goals for which certain simplifying assumptions can be made, e.g. when intragranule solute transport can be lumped in apparent kinetics and when biofilm models are needed, which explicitly calculate substrate concentration gradients inside granules. Furthermore, research is needed to better mechanistically understand detachment, removal of influent particulate matter and changes in the mixing behaviour inside anaerobic systems, before these phenomena can be adequately incorporated in models. Finally, it is suggested to perform full-scale model validation studies for aerobic and anammox reactors. A spreadsheet in the supplementary information provides an overview of the features in the 167 reviewed models. (C) 2018 Elsevier Ltd. All rights reserved.
机译:带有颗粒污泥的废水处理过程非常紧凑,并且越来越受欢迎。兴趣伴随着数学模型的发展。该贡献同时回顾了厌氧,好氧和部分硝化-厌氧颗粒污泥反应器的科学文献中可用的模型,因为它们包含常见的现象(例如,液体,气体和颗粒运输),因此也带来了类似的挑战。发现许多出版物没有明确的目标。强调目标的重要性是因为它确定了适当的模型复杂性,并帮助其他潜在用户在大量文献中找到了适当的模型。其次,在模型特征中发现了各种各样的特征。这篇综述尽可能地解释了基于不同反应堆类型和目标选择的建模假设,但是某些假设似乎是研究领域中的惯常行为,没有明确的原因。因此,我们建议您进行进一步的研究,以更明确地定义可以进行某些简化假设的操作条件和目标范围,例如当颗粒内溶质的运输可以集中在表观动力学中,以及何时需要生物膜模型时,该模型可以明确地计算颗粒内部的底物浓度梯度。此外,在将这些现象充分纳入模型之前,需要进行研究以更好地机械理解分离,进水颗粒物的去除以及厌氧系统内部混合行为的变化。最后,建议对好氧和厌氧反应器进行全面的模型验证研究。补充信息中的电子表格提供了167个审阅模型中功能的概述。 (C)2018 Elsevier Ltd.保留所有权利。

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