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Effects of various frequencies and powers of ultrasound on cleaning of flat sheet membrane during and after microfiltration

机译:超声的不同频率和功率对微滤期间和之后平板膜清洁的影响

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摘要

Membrane processing has found many applications in various industries as an advanced method of separating materials in liquid or gas. The greatest obstacle in using membrane filtration technology is fouling, particularly in porous membranes. The fouling phenomenon is the result of organic and inorganic materials depositing on the surface and pores of membrane. In this study, the effect of ultrasound frequency (37, 80kHz, and tandem) and amplitude of sonication (30, 60, and 90%) were evaluated on flux recovery during and after microfiltration. Results showed that the 37kHz and tandem frequencies significantly improved the permeate flux at earlier minutes, particularly when tandem frequency was applied. In addition, the permeate flux was increased as the sonication power increased. However, the interaction effects between frequency and sonication power showed that the ultrasound frequencies were more effective than sonication power on flux recovery. Furthermore, the calculation of fouling percentage showed that both low frequencies and high amplitude together significantly reduced the fouling agents during the cleaning process. However, there were no remarkable statistical effects among the same levels of sonication power during the cleaning process. The interaction effects of various frequencies and powers of ultrasound on cleaning membranes were evaluated and more cleaning efficiency was observed in comparison to sonication power when low frequency applied.
机译:膜加工作为分离液体或气体中材料的先进方法,已在各个行业中获得了许多应用。使用膜过滤技术的最大障碍是结垢,尤其是在多孔膜中。结垢现象是有机和无机材料沉积在膜表面和孔上的结果。在这项研究中,评估了超声频率(37、80kHz和串联)和超声振幅(30%,60%和90%)对微滤期间和之后通量恢复的影响。结果表明,在更早的时间,尤其是使用串联频率时,37kHz和串联频率显着提高了渗透通量。另外,随着超声功率的增加,渗透通量增加。然而,频率和超声功率之间的相互作用影响表明,超声频率在通量恢复方面比超声功率更有效。此外,结垢百分比的计算表明,在清洁过程中,低频和高振幅共同显着减少了结垢剂。但是,在清洁过程中,在相同水平的超声处理功率之间没有显着的统计效果。评估了不同频率和超声功率对清洁膜的相互作用影响,与低频施加超声处理功率相比,观察到更高的清洁效率。

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