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首页> 外文期刊>Chemical Engineering Communications >Modeling of Membrane Fouling and Flux Decline in Microfiltration of Oily Wastewater Using Ceramic Membranes
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Modeling of Membrane Fouling and Flux Decline in Microfiltration of Oily Wastewater Using Ceramic Membranes

机译:陶瓷膜对含油废水微滤膜污染和通量下降的建模

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摘要

One of the major problems in pressure-driven membrane processes is reduction of flux far below the theoretical capacity of the membrane. The results of an experimental study of fouling mechanisms of ceramic membranes in separation of oil from synthesized oily wastewaters are presented. Mullite microfdtration (MF) membranes were synthesized from kaolin clay as MF ceramic membranes. The rejection of total organic carbon (TOC) for the synthetic feeds was found to be more than 94% by these membranes. Hermia's models were used to investigate the fouling mechanisms of membranes. The effect of pressure, cross flow velocity (CFV), temperature, oil concentration, and salt concentration on flux decline were investigated. The results showed that the cake filtration model can well predict the flux decline of mullite ceramic membranes; average error of this model is less than 7%. The results show that by increasing pressure from 0.5 to 4 bar, porosity of the cake layer on the mullite membranes decreases from 25.68% to 14.98%. After the cake filtration model, the intermediate pore blocking model was found to well predict the experimental data with an average error less than 10.5%.
机译:压力驱动膜工艺中的主要问题之一是通量的减少远低于膜的理论容量。提出了从合成含油废水中分离出油中陶瓷膜结垢机理的实验研究结果。从高岭土中合成了莫来石微滤(MF)膜作为MF陶瓷膜。通过这些膜发现,合成进料的总有机碳(TOC)排斥率超过94%。 Hermia模型用于研究膜的结垢机理。研究了压力,横流速度(CFV),温度,油浓度和盐浓度对通量下降的影响。结果表明,滤饼过滤模型可以很好地预测莫来石陶瓷膜通量的下降。该模型的平均误差小于7%。结果表明,通过将压力从0.5 bar增加到4 bar,莫来石膜上的滤饼层的孔隙率从25.68%降低到14.98%。在滤饼过滤模型之后,发现中间孔阻塞模型可以很好地预测实验数据,平均误差小于10.5%。

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