CABLES;
COPPER;
EMULSIFICATION;
METAL IONS;
NANOFILTRATION;
ULTRAFILTRATION;
WASTE TREATMENT;
WASTEWATER RECLAMATION;
WATER CONSERVATION;
WATER POLLUTION;
WATER TREATMENT;
WIRE;
WIRE DRAWING;
EFFLUENTS;
COPPER;
COPPER ION;
LUBRICATING AGENT;
OIL;
COPPER;
EMULSION;
EXPERIMENTAL STUDY;
FILTRATION;
LUBRICANT;
MEMBRANE;
WATER TREATMENT;
Investigation of the solute separation by charged nanofiltration membrane: effect of pH, ionic strength and solute type
Xu Y., Leburn R.E. Investigation of the solute separation by charged nanofiltration membrane: effect of pH, ionic strength and solute type. J. Membr. Sci. 1999, 158:93-104.
Copper transfer modeling through a nanofiltration membrane in the case of ternary aqueous solution
Mehiguene K., Taha S., Gondrexon N., Cabon J., Dorange G. Copper transfer modeling through a nanofiltration membrane in the case of ternary aqueous solution. Desalination 2000, 127:135-143.
Influence of membrane and colloid characteristics on fouling of nanofiltration membranes
Boussu K., Belpaire A., Volodin A., Van Haesendonck C., Van der Meeren P., Vandecasteele C., Van der Bruggen B. Influence of membrane and colloid characteristics on fouling of nanofiltration membranes. J. Membr. Sci. 2007, 289:220-230.