JOURNAL ARTICLE

Unsteady-State Permeate Flux of Crossflow Microfiltration: Effect of Particle Size Distribution

Dong‐Jang ChangShyh‐Jye Hwang

Year: 1995 Journal:   Separation Science and Technology Vol: 30 (14)Pages: 2917-2931   Publisher: Taylor & Francis

Abstract

Abstract A mathematical model based on a hydrodynamic theory and mass balance was developed for the prediction of the unsteady-state permeate flux in crossflow microfiltration under the influence of particle size distribution. Experiments were also conducted in a membrane filtration cell to verify this model. Spherical polystyrene latex particles of 0.303, 0.606, and 1.020 μm were used to make suspensions of various particle size distributions. The flow of the suspension in the channel of the filtration cell was controlled under the laminar flow region. It was found that the unsteady-state permeate flux increased as the mean particle size of the suspension was increased. Moreover, the model predicted satisfactorily the unsteady-state permeate flux under the effect of particle size distribution.

Keywords:
Microfiltration Chemistry Laminar flow Suspension (topology) Mechanics Particle size Filtration (mathematics) Flux (metallurgy) Particle-size distribution Particle (ecology) Permeation Mass flux Cross-flow filtration Steady state (chemistry) Membrane Chromatography Thermodynamics Physics

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12
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0.98
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11
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0.80
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Citation History

Topics

Membrane Separation Technologies
Physical Sciences →  Environmental Science →  Water Science and Technology
Aerosol Filtration and Electrostatic Precipitation
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Electrospun Nanofibers in Biomedical Applications
Physical Sciences →  Materials Science →  Biomaterials

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