Uniform Polyethersulfone (PES) microspheres of target size in the range of 30-60. ?m were successfully prepared by combining membrane emulsification technology and phase separation induced process in one step. An emulsion is generated by injecting the polymeric solution through a microporous membrane into the continuous phase which allows also the phase separation induced process and precipitation of the polymer (coagulation bath). Therefore, the droplets formation and solidification occur in a single step. Furthermore, the preparation of non-aqueous (O/O) emulsions by membrane emulsification as well as the preparation of polymeric microspheres by non-solvent induced phase separation has never been reported previously. The effect of continuous phase-coagulation bath composition, hydrophobic emulsifier, dispersed phase flux and shear stress on size and uniformity of PES microspheres has been investigated. Key factors in microspheres production by membrane emulsification and phase separation induced process mechanism include the solvent/non-solvent system type, non-solvent composition and O/O interface composition. Polymeric microspheres with spherical morphology have been produced by tailoring such key factors.

Polymeric microspheres preparation by membrane emulsification-phase separation induced process

Piacentini E;Figoli A;Drioli E;Giorno;
2013

Abstract

Uniform Polyethersulfone (PES) microspheres of target size in the range of 30-60. ?m were successfully prepared by combining membrane emulsification technology and phase separation induced process in one step. An emulsion is generated by injecting the polymeric solution through a microporous membrane into the continuous phase which allows also the phase separation induced process and precipitation of the polymer (coagulation bath). Therefore, the droplets formation and solidification occur in a single step. Furthermore, the preparation of non-aqueous (O/O) emulsions by membrane emulsification as well as the preparation of polymeric microspheres by non-solvent induced phase separation has never been reported previously. The effect of continuous phase-coagulation bath composition, hydrophobic emulsifier, dispersed phase flux and shear stress on size and uniformity of PES microspheres has been investigated. Key factors in microspheres production by membrane emulsification and phase separation induced process mechanism include the solvent/non-solvent system type, non-solvent composition and O/O interface composition. Polymeric microspheres with spherical morphology have been produced by tailoring such key factors.
2013
Istituto per la Tecnologia delle Membrane - ITM
Inglese
448
190
197
http://www.sciencedirect.com/science/article/pii/S0376738813005310
Sì, ma tipo non specificato
Membrane emulsification; Non-solvent induced phase separation; Oil-in-oil emulsions; Polyethersulfone (PES); Polymeric microspheres
7
info:eu-repo/semantics/article
262
Piacentini, E; Lakshmi, ; D, S; Figoli, A; Drioli, E; Giorno, Lidietta; L,
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Preparation of ionic liquid microcapsule membranes loaded and their application in NMVOCs removal
   ILMC
   FP7
   237855
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/258141
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