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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Modeling of the submerged membrane bioreactor fouling by the combined pore constriction, pore blockage and cake formation mechanisms
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Modeling of the submerged membrane bioreactor fouling by the combined pore constriction, pore blockage and cake formation mechanisms

机译:通过孔收缩,孔堵塞和滤饼形成机理的组合,对淹没式膜生物反应器的结垢进行建模

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摘要

Although major factors affecting the membrane bioreactor fouling process have been identified, no linear relationships between these factors and fouling were established. This indicates the existence of synergistic interplays among these factors in determining the overall fouling behavior. The synergistic effect on fouling hasn't been fully considered in the fouling mathematical model development. Activated sludge within membrane bioreactor is a complex mixture of soluble, colloidal and solid materials. In this paper, a theoretical model was developed to account for the synergistic effects of soluble, colloidal and suspended activated sludge components on the fouling process. It included the major advances in the fouling mechanisms based on the pore constriction, pore blockage and cake filtration. The model prediction was shown to be in excellent agreement with experimental results from literature. This suggests that modeling approach in this paper is valid in predicting the flux decline process.
机译:尽管已经确定了影响膜生物反应器结垢过程的主要因素,但这些因素与结垢之间未建立线性关系。这表明在确定总体结垢行为时,这些因素之间存在协同相互作用。在结垢数学模型开发中尚未充分考虑对结垢的协同作用。膜生物反应器内的活性污泥是可溶性,胶体和固体材料的复杂混合物。在本文中,建立了一个理论模型来说明可溶性,胶体和悬浮活性污泥组分对结垢过程的协同作用。它包括基于孔收缩,孔堵塞和滤饼过滤的结垢机理方面的重大进展。模型预测显示与文献的实验结果非常吻合。这表明本文中的建模方法在预测通量下降过程中是有效的。

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