Composite membranes were prepared by co-casting, incorporating two nonionic surfactants in a poly(ether-block-amide), PebaxTM 1657 up to 50 wt.%. These polysorbate nonionic surfactants contain many ethylene oxide units and are very CO2-philic agents; thereby, they can be exploited as membrane additives for gas separation involving carbon oxide. Dynamic light scattering analysis proved a higher stability of additionated PebaxTM 1657 solutions with respect to those containing only the copolymer. Scanning electron microscopy showed a regular membrane morphology without pores or defects for all investigated samples. If on the one hand the addition of the additive has depressed the mechanical properties, on the other it has positively influenced the gas transport properties of PebaxTM 1657 films. CO2 permeability increased up to two or three times after incorporation of 50 wt.% additive in copolymer matrix, while the selectivity was not significantly affected. The effect of temperature on permanent gas transport properties was studied in the range 15-55 °C.

Enhancing Gas Permeation Properties of Pebax® 1657 Membranes via Polysorbate Nonionic Surfactants Doping

P Bernardo;G Clarizia
2020

Abstract

Composite membranes were prepared by co-casting, incorporating two nonionic surfactants in a poly(ether-block-amide), PebaxTM 1657 up to 50 wt.%. These polysorbate nonionic surfactants contain many ethylene oxide units and are very CO2-philic agents; thereby, they can be exploited as membrane additives for gas separation involving carbon oxide. Dynamic light scattering analysis proved a higher stability of additionated PebaxTM 1657 solutions with respect to those containing only the copolymer. Scanning electron microscopy showed a regular membrane morphology without pores or defects for all investigated samples. If on the one hand the addition of the additive has depressed the mechanical properties, on the other it has positively influenced the gas transport properties of PebaxTM 1657 films. CO2 permeability increased up to two or three times after incorporation of 50 wt.% additive in copolymer matrix, while the selectivity was not significantly affected. The effect of temperature on permanent gas transport properties was studied in the range 15-55 °C.
2020
Istituto per la Tecnologia delle Membrane - ITM
Composite membranes; poly(ether-block-amide) copolymers; nonionic surfactants; CO2 separation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/370032
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