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Study of a membrane bioreactor with glass fiber flat grille modules and the modules' optimization based on the local critical flux theory

机译:基于玻璃纤维平板格栅组件的膜生物反应器的研究及基于局部临界通量理论的组件优化

摘要

A novel flat grille membrane module using inorganic glass fibers as filter media is proposed for use in a membrane bioreactor for wastewater treatment. A model which integrates the concepts of back transport velocity, spatial local critical flux and temporal variation of the local flux has been developed. The membrane module was optimized based on experimental results and calculations using the model. The optimized parameters include the volume ratio of membrane solution for the surface modification of glass fibers, the fiber inner diameter and fiber length. The optimal values were 1:2 and 5 mm respectively but the length had little effect on the performance of the module. The critical time was then calculated with the model and an equation developed. The result was in very good agreement with the observed one. Finally, the performance of the glass fiber MBR was monitored. The effluent quality and stability of the system were comparable to that of conventional MBRs. This MBR will be a promising technique for wastewater treatment given its low cost, high strength and good effluent quality. (c) 2009 Elsevier Ltd. All rights reserved.
机译:提出了一种使用无机玻璃纤维作为过滤介质的新型平板格栅膜组件,用于膜生物反应器中以处理废水。已经建立了一个模型,该模型整合了反向传输速度,空间局部临界通量和局部通量的时间变化的概念。基于实验结果和使用该模型的计算,对膜组件进行了优化。优化的参数包括用于玻璃纤维表面改性的膜溶液的体积比,纤维内径和纤维长度。最佳值分别为1:2和5 mm,但长度对模块的性能影响很小。然后使用模型计算临界时间,并开发出方程式。结果与观察到的结果非常吻合。最后,监测玻璃纤维MBR的性能。该系统的出水水质和稳定性与常规MBR相当。该MBR成本低,强度高,出水水质好,将是一种很有前途的废水处理技术。 (c)2009 Elsevier Ltd.保留所有权利。

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