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  • Title: Hydrodynamic optimization of membrane bioreactor by horizontal geometry modification using computational fluid dynamics.
    Author: Yan X, Wu Q, Sun J, Liang P, Zhang X, Xiao K, Huang X.
    Journal: Bioresour Technol; 2016 Jan; 200():328-34. PubMed ID: 26512855.
    Abstract:
    Geometry property would affect the hydrodynamics of membrane bioreactor (MBR), which was directly related to membrane fouling rate. The simulation of a bench-scale MBR by computational fluid dynamics (CFD) showed that the shear stress on membrane surface could be elevated by 74% if the membrane was sandwiched between two baffles (baffled MBR), compared with that without baffles (unbaffled MBR). The effects of horizontal geometry characteristics of a bench-scale membrane tank were discussed (riser length index Lr, downcomer length index Ld, tank width index Wt). Simulation results indicated that the average cross flow of the riser was negatively correlated to the ratio of riser and downcomer cross-sectional area. A relatively small tank width would also be preferable in promoting shear stress on membrane surface. The optimized MBR had a shear elevation of 21.3-91.4% compared with unbaffled MBR under same aeration intensity.
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