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Influence of operational parameters on retention of ultra-high molecular weight polystyrenes in thermal field-flow fractionation
Authors:J. Janča  M. Martin
Affiliation:(1) Laboratoire de Physique et Mécanique des Milieux Hétérogènes (URA CNRS 857), École Supérieure de Physique et Chimie Industrielles, 10 rue Vauquelin, 75231 Paris Cedex 05, France
Abstract:Summary The influence of various parameters (concentration of the injected polymer solution, flow rate, temperature gradient, relaxation conditions) on the retention and shape of the fractogram of ultra-high molecular weight polystyrenes in thermal field-flow fractionation was investigated. Under the operating conditions adopted, reproducible oscillations in the peak shape are observed for molecular weights larger than a few millions, especially at relatively high polymer concentration. They are attributed to some hydrodynamic instabilities. The retention of ultra-high molecular weight polystyrenes at high flow rate is strongly dependent on the initial relaxation period. All of the investigated operational variables have a complex effect on the resulting shape of the fractogram. Consequently, the confirmation of the shear-induced focusing of macromolecules across the channel thickness requires further study. Experiments on reinjection of fractions collected after an initial high speed pass through the separation system leads to the conclusion that shear degradation of the ultra-high molecular weight polymers did not occur under the investigated experimental conditions even at the highest flow rates.
Keywords:Thermal field-flow fractionation  Ultra-high molecular weight polystyrenes  Shear induced degradation  Relaxation phenomena  Hydrodynamic instabilities and concentration effects
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