D. Roizard et al., Preparation and study of crosslinked polyurethane films to fractionate toluene-n-heptane mixtures by pervaporation, SEP PURIF T, 22-3(1-3), 2001, pp. 45-52
Poly (ether urethane) and poly(ester urethane) segmented copolymers (noted
PEG and PCL) were prepared from aliphatic diisocyanate and ether or ester o
ligomer diols in one or two synthetic steps tither from end capped isocyana
tes (route 1) or hydroxyl (route 2) functionalised oligomers. The ratio of
NCO to OH groups used for the copolymerisation led to the preparation of ch
emically crosslinked polyurethane films. Their microphase-separated structu
res were characterised by DSC and the T-g and T-m of the soft blocks was re
corded. The separation properties of the polymer films were investigated by
sorption, diffusion and pervaporation (PV) experiments with toluene-n-hept
ane mixtures. The experiments demonstrated strong toluene selectivity for a
ll the films carried out on the whole range of concentration. The membranes
prepared according to route 1 exhibited lower sorption degrees and fluxes
than the ones prepared by route 2, differences that could be easily related
to the lower crosslinking density achieved by route 2; on the other hand t
he selectivity of both membrane types was almost the same. The diffusion co
efficients at infinite dilution of both pure solvents were determined from
experiments carried out in the transient state and the toluene coefficient
was found to slightly exceed the n-heptane one in the less crosslinked uret
hane networks. The preferential pervaporation of the aromatic compound was
basically shown to be due to the sorption step; nevertheless in all cases t
he sorption selectivity was higher than the pervaporation one which means t
hat the diffusion step was in fact more favourable to the aliphatic compone
nt. (C) 2001 Elsevier Science B.V. All rights reserved.