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Effect of membrane characteristics on the performance of membrane bioreactors for oily wastewater treatment

机译:膜特性对含油废水处理膜生物反应器性能的影响

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Influence of membrane material and pore size on the performance of a submerged membrane bioreactor (sMBR) for oily wastewater treatment was investigated. The sMBR had a working volume of about 19 L with flat sheet modules at the same hydrodynamic conditions. Five types of micro- and ultra-polymeric membranes containing cellulose acetate (CA), cellulose nitrate (CN), polyamide (PA), polyvinylidene difluoride (PVDF) and polyethersulfone (PES) were used and their filtration performance in terms of permeability, permeate quality and fouling intensity were evaluated. Characterization of the membranes was done by performing some analysis such as pore size distribution; contact angle and scanning electronic microscopy (SEM) microphotograph on all membranes. The quality of permeates from each membrane was identified by measuring chemical oxygen demand (COD). The results showed more irreversible fouling intensity for membranes with larger pore size which can be due to more permeation of bioparticles and colloids inside the pores. Membrane characteristics have a major role in the preliminary time of the filtration before cake layer formation so that the PA with the highest hydrophilicity had the lowest permeability decline by fouling in this period. Also, the PVDF and PES membranes had better performance according to better permeate quality in the preliminary time of the filtration related to smaller pore size and also their better fouling resistance and chemical stability properties. However, all membranes resulted in the same permeability and permeate quality after cake layer formation. An overall efficiency of about 95% in COD removal was obtained for oily wastewater treatment by the membranes used in this study.
机译:研究了膜材料和孔径对淹没膜生物反应器(sMBR)处理含油废水的性能的影响。在相同的流体动力条件下,平板模块的sMBR的工作容积约为19L。使用了五种类型的包含醋酸纤维素(CA),硝酸纤维素(CN),聚酰胺(PA),聚偏二氟乙烯(PVDF)和聚醚砜(PES)的微和超聚合物膜,并根据渗透性,渗透性对其进行了过滤评价质量和结垢强度。膜的表征是通过进行一些分析来完成的,例如孔径分布。所有膜上的接触角和扫描电子显微镜(SEM)显微照片。通过测量化学需氧量(COD)可以确定每个膜的渗透物质量。结果表明,较大孔径的膜的不可逆结垢强度更高,这可能是由于生物颗粒和胶体在孔内的渗透增加所致。膜特性在形成滤饼层之前的初步过滤时间中起主要作用,因此,在这段时间中,具有最高亲水性的PA受污垢的渗透率下降最低。而且,由于较小的孔径,在过滤的初始阶段,PVDF和PES膜具有更好的渗透性能,这是因为它们具有更好的渗透质量,同时它们还具有更好的防污性和化学稳定性。然而,在滤饼层形成之后,所有膜都导致相同的渗透性和渗透质量。通过本研究中使用的膜,对于含油废水处理,COD去除的总效率约为95%。

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