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The biofilm airlift suspension extension reactor. Part I: Design and two-phase hydrodynamics

机译:生物膜气举悬浮液扩展反应器。第一部分:设计和两相流体动力学

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摘要

A new ractor, the biofilm airlift suspension extension (BASE) reactor, was developed for nitrificantion and denitrificantion of wastewater. It consists of an internal-loop airlift reactor, appended with an additional downcomer, the extension. The internal airlift part of the BSAE reactor consists of an idearlly mixed pool of liquid. air bubbles and solid particles. The extension is free of air bubbles, and particles and liquid move downward in plug flow. Overpressure in the headspace is used to control the liquid velocity in the extension, independent of the air flow rate, changing the recirculation ratio between the internal comartment and the extension. A three-phase model was developed to describe the hydrodynamic behaviour of the BASE rractor. Using the model a full-scale BASE reactor was designed. Then a scale-up/scale-down approach was applied to design and construct a pilot-scale BASE reactor (height 6 m, volume 1.7 m~3), to valideate the hydrodynamic model. The model predicts the measurements in a two-phase system (water and air) well.
机译:开发了一种新的拖拉机,生物膜气举悬浮扩展(BASE)反应器,用于废水的硝化和反硝化。它由一个内部回路空运反应堆和一个附加的降液管(扩展)组成。 BSAE反应器的内部气举部分由概念上混合的液体池组成。气泡和固体颗粒。延伸部分没有气泡,颗粒和液体在活塞流中向下移动。顶部空间中的超压用于控制延伸部分中的液体速度,而与空气流速无关,从而改变内部隔室和延伸部分之间的再循环比。开发了一个三相模型来描述BASE拖拉机的水动力行为。使用该模型设计了一个完整的BASE反应器。然后采用放大/缩小方法设计和建造了中试规模的BASE反应堆(高度6 m,体积1.7 m〜3),以验证流体力学模型。该模型可预测两相系统(水和空气)井中的测量结果。

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