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Mechanisms and models for anaerobic granulation in upflow anaerobic sludge blanket reactor

机译:上流式厌氧污泥床反应器厌氧造粒机理与模型

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Upflow anaerobic sludge blanket (UASB) reactor has been employed in industrial and municipal wastewater treatment for decades. However, the long start-up period required for the development of anaerobic granules seriously limits the application of this technology. In order to develop the strategy for rapid UASB start-up, the mechanisms for anaerobic granulation should be understood. This paper attempts to provide a up-to-date review on the existing mechanisms and models for anaerobic granulation in the UASB reactor, which include inert nuclei model, selection pressure model, multi-valence positive ion-bonding model, synthetic and natural polymer-bonding model, Capetown's model, spaghetti theory, syntrophic microcolony model, multi-layer model, secondary minimum adhesion model, local dehydration and hydrophobic interaction model, surface tension model, proton translocation-dehydration theory, cellular automaton model and cell-to-cell communication model. Based on those previous works, a general model for anaerobic granulation is also proposed. It is expected that this paper would be helpful for researchers to further develop a unified theory for anaerobic granulation and technology for expediting the formation of the UASB granules.
机译:上流厌氧污泥层反应器(UASB)已用于工业和市政废水处理数十年。但是,厌氧颗粒剂开发所需的长启动时间严重限制了该技术的应用。为了制定快速启动UASB的策略,应了解厌氧制粒的机制。本文试图对UASB反应器中厌氧制粒的现有机制和模型进行最新综述,包括惰性核模型,选择压力模型,多价正离子键合模型,合成和天然聚合物-键模型,开普敦模型,意大利面条理论,共生微菌落模型,多层模型,次要最小粘附模型,局部脱水和疏水相互作用模型,表面张力模型,质子移位-脱水理论,细胞自动机模型和细胞间通信模型。基于这些先前的工作,还提出了厌氧制粒的通用模型。希望本文对研究人员进一步开发厌氧制粒和加速UASB颗粒形成技术的统一理论有所帮助。

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