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Effects of various factors on critical flux in submerged membrane bioreactors for municipal wastewater treatment

机译:各种因素对城市污水处理中膜生物反应器临界通量的影响

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Critical flux is an important concept in membrane bioreactor (MBR) process for wastewater treatment, and the study on it could enhance the understanding of MBR process and facilitate its application. In this study, the effects of various factors, such as sludge concentration, aeration intensity, soluble chemical oxygen demand (SCOD) of the mixed liquors, and measurement parameters including initial flux, step length and step height, and membrane properties including membrane materials and membrane history, on critical flux were critically investigated. Test results showed that the critical flux decreased with the increase of sludge concentration and it could be enhanced by improving aeration intensity. SCOD, which was used to indicate sludge characteristics, was found to have a negative effect on critical flux. It was also observed that the increase of step length or step height would lower the critical flux; however, the variations of initial fluxes did not clearly affect critical flux. In addition, membrane materials also had significant influences on critical flux, and membrane M3 had a higher critical flux value, which was more suitable for the application to the submerged MBR compared to Ml and M2 membranes. Membrane history was found to have negative impacts on membrane critical flux, and the critical flux decreased as the membrane operation prolonged.
机译:临界通量是膜生物反应器(MBR)处理废水的重要概念,对其进行的研究可以加深对MBR工艺的理解,并促进其应用。在这项研究中,各种因素的影响,例如污泥浓度,曝气强度,混合液的可溶性化学需氧量(SCOD)以及测量参数(包括初始通量,步长和步高)以及膜特性(包括膜材料和膜的历史,对临界通量进行了严格研究。试验结果表明,临界通量随着污泥浓度的增加而降低,可以通过提高曝气强度来提高。发现用来指示污泥特性的SCOD对临界通量有负面影响。还观察到,步长或步高的增加会降低临界通量;但是,初始通量的变化并没有明显影响临界通量。另外,膜材料也对临界通量具有显着影响,并且膜M3具有较高的临界通量值,与M1和M2膜相比,其更适合用于浸没式MBR。发现膜历史对膜临界通量具有负面影响,并且随着膜操作时间的延长,临界通量降低。

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