CAPILLARY MEMBRANES FOR SEPARATION OF DYE PARTICLES

Citation
K. Majewskanowak et al., CAPILLARY MEMBRANES FOR SEPARATION OF DYE PARTICLES, Desalination, 105(1-2), 1996, pp. 91-103
Citations number
13
Categorie Soggetti
Water Resources","Engineering, Chemical
Journal title
ISSN journal
00119164
Volume
105
Issue
1-2
Year of publication
1996
Pages
91 - 103
Database
ISI
SICI code
0011-9164(1996)105:1-2<91:CMFSOD>2.0.ZU;2-S
Abstract
The study aimed at investigating the suitability of capillary modules to the decolorization of both synthetic and actual dye solutions by ul trafiltration. The process involved capillary membranes made of polysu lfone and modified polysulfone. Membrane modules (UFTA PS10; UFTA PS30 , and UFTA PSA50) of various molecular cut-off were applied. Comparabl e studies including the effect of hydraulic conditions existing in the system on membrane performance were reported. Transport and separatio n properties of the membranes in the presence of model dye solutions w ere investigated at three pressure values (0.05; 0.1, and 0.15 MPa), t he linear velocity in the modules being varied for each of them (0.5; 1.0, and 1.5 m/s). Three organic dyes (Direct Black Meta, Helion Grey and Methyl Orange) were used in the experiments. The study on actual t extile effluents (exhausted dye and rinsing baths) were carried out fo r 50 h at a pressure of 0.1 MPa and a linear velocity of 1.0 m/s. The results showed that increasing the linear velocity generally improves the permeability and selectivity of the membranes. This relationship b ecomes particularly pronounced at increasing molecular weight and for the UFTA PS10 module. It has been found that at an optimum velocity of feed flow (1.0 m/s) the retention coefficient for organic dyes of mol ecular weight higher than 780 exceeds 92-99% for all tested modules. I n the presence of actual textile effluents the removal efficiency of T OC and colour amounted to 42-65% and 70-98%, respectively, and the per meability remained on a constant level (0.5-0.65 m(3)/m(2)/d for the U FTA PS10 module).