Effect of Particle Size and Membrane Pore Size on Crossflow Microfiltration of Micro-sized Particle Suspension Using Ceramic Membranes
Zhong Jin
Abstract
Zhong Jin
Abstract
In order to obtain the selection method of membrane pore size and fouling mechanism in suspension filtration, ceramic membranes of different properties were used to filter aqueous suspensions carrying fine particles of known size and chemical composition. By changing the membrane pore size,structure and particle size in a system manner and calculating the filtration resistances, the importance of the particle size/membrane pore size ratio to membrane flux and fouling mechanism was illustrated.When dp /dm is less than 2.4, membrane fouling was produced by pore plugging and particle bridging; when dp/dm is larger than 2.4, the fouling was produced by cake layer deposited on membranes. A selection criteria of ceramic membrane pore size for fine particles microfiltration was also obtained. The membrane pore size should fall in the range of dp/dm larger than 2.4 and less than 10 when filtered suspensions with fine particles of known size.
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In order to obtain the selection method of membrane pore size and fouling mechanism in suspension filtration, ceramic membranes of different properties were used to filter aqueous suspensions carrying fine particles of known size and chemical composition. By changing the membrane pore size,structure and particle size in a system manner and calculating the filtration resistances, the importance of the particle size/membrane pore size ratio to membrane flux and fouling mechanism was illustrated.When dp /dm is less than 2.4, membrane fouling was produced by pore plugging and particle bridging; when dp/dm is larger than 2.4, the fouling was produced by cake layer deposited on membranes. A selection criteria of ceramic membrane pore size for fine particles microfiltration was also obtained. The membrane pore size should fall in the range of dp/dm larger than 2.4 and less than 10 when filtered suspensions with fine particles of known size.
Key concepts: Microfiltration, Membrane, Particle size, Ceramic membrane, Membrane fouling, Fouling, Filtration (mathematics), Suspension (topology)