Local permeate flux-sheer-pressure relationships in a rotating disk microfiltration module: implications for global performance

Citation
R. Bouzerar et al., Local permeate flux-sheer-pressure relationships in a rotating disk microfiltration module: implications for global performance, J MEMBR SCI, 170(1), 2000, pp. 127-141
Citations number
20
Categorie Soggetti
Chemistry,"Chemical Engineering
Journal title
JOURNAL OF MEMBRANE SCIENCE
ISSN journal
03767388 → ACNP
Volume
170
Issue
1
Year of publication
2000
Pages
127 - 141
Database
ISI
SICI code
0376-7388(20000515)170:1<127:LPFRIA>2.0.ZU;2-Q
Abstract
This paper investigates first the performance of a rotating disk microfiltr ation system, described by the mean permeate flux as a function of particle concentration, disk rotation speed and peripheral transmembrane pressure ( TMP), using suspensions of calcium carbonate particles. The second part pre sents the radial distribution of permeate flux and filtration resistance ob tained by using concentric membrane rings and their relationship with local shear stress and TMP. Our data confirm that high shear stresses induced by the disk rotation prevent the formation of a cake on the membrane except i n the central part at low speed. Consequently, this system is capable of ma intaining high permeate fluxes (200 l h(-1) m(-2)) at large particle concen trations (700 kg m(-3)). At speeds above 1100 rpm, the permeate flux increa ses with radius above 4 cm and fouling disappears almost completely in the peripheral zone. The local flux in the central zone reaches a plateau when TMP is increased above 35 kPa, while it keeps increasing with pressure in o ther zones. The filtration resistance was found to increase linearly with l ocal TMP in all zones, but at a lesser rate in peripheral ones. Fouling irr eversibility was observed when reducing rotation speed, especially at high TMP. We conclude that this system is very efficient in case of external fou ling when used at disk tip velocities above 12 m s(-1). (C) 2000 Elsevier S cience B.V. All rights reserved.