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- W2284518162 abstract "Fouling is a critical factor that determines the performance of membrane systems. Increasing shear rate at the membrane surface by cross flow velocity and air bubbling has been reported to decrease the fouling layer (Beier et al., 2006). Shear rate can also be increased by using non conventional methods such as vibration, which involves vibration or rotation of the membrane. These systems are known as the vibratory shear enhanced processes (VSEP) or vibrating membrane filter (VMF) and are generally based on flat sheet membranes (Beier et al., 2006). However, the application of the vibration principle to hollow fibre systems is so far limited even at lab scale. Beier et al. (Beier et al., 2006) and Genkin et al. (Genkin et al., 2006) both investigated the effect of vertical vibration on fouling mitigation using yeast as the feed solution. No research on the transverse membrane vibration has been reported in the literature. Transverse vibration could be implemented more readily and might potentially have less energy requirement than vertical vibration which requires shifting the membrane module up and down. The aim of this research is to investigate the potential fouling limitation strategy of transverse vibration of hollow fibre membrane. Polyvinyldene fluoride (PVDF) hollow fibre membrane with the pore size of 0.04μm (from Siemens Water Technology, Australia) is used. Yeast suspension and the supernatant from anaerobic bioreactor were used as feed solution in the study. Both the flux stepping critical flux experiments and the long term constant flux experiments were used to investigate the performance of transverse vibration on fouling limitation." @default.
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- W2284518162 date "2011-01-01" @default.
- W2284518162 modified "2023-09-24" @default.
- W2284518162 title "Low frequency transverse vibration as a fouling limitation stragety in membrane bioreactors" @default.
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