Abstract
A novel membrane emulsification (ME) system is reported consisting of a tubular metal membrane, periodically azimuthally (tangentially) oscillated with frequencies up to 50 Hz and 7 mm displacement in a gently cross flowing continuous phase. A computational fluid dynamics (CFD) analysis showed consistent axial shear at the membrane surface, which became negligible at distances from the membrane surface greater than 0.5 mm. For comparison, CFD analysis of a fully rotating ME system showed local vortices in the continuous phase leading to a variable shear along the axis of the membrane. Using an azimuthally oscillating membrane, oil-in-water emulsions were experimentally produced with a median diameter of 20-120 μm, and a coefficient of variation of droplet size of 8%. The drop size was correlated with shear stress at the membrane surface using a force balance. In a single pass of continuous phase, it was possible to achieve high dispersed phase concentrations of 40% v/v.
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Silva, P. S., Dragosavac, M. M., Vladisavljević, G. T., Bandulasena, H. C. H., Holdich, R. G., Stillwell, M., & Williams, B. (2015). Azimuthally oscillating membrane emulsification for controlled droplet production. AIChE Journal, 61(11), 3607–3615. https://doi.org/10.1002/aic.14894
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