首页|Towards azeotropic MeOH-MTBE separation using pervaporation chitosan-based deep eutectic solvent membranes

Towards azeotropic MeOH-MTBE separation using pervaporation chitosan-based deep eutectic solvent membranes

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Deep eutectic solvents (DESs) are a new class of solvents that can offset some of the major drawbacks of common solvents and ionic liquids. When dealing with the preparation of dense membranes, the use of DESs is still challenging due to their low compatibility with the polymer phase. In this research, a novel L-proline:sulfolane (molar ratio 1:2) DES was synthesized and used for the preparation of more sustainable bio-based membranes using chitosan (CS) as a polymer phase. The compatibility among both phases (polymer and DESs) and their ability to form homogenous membranes was preliminary studied. In this regard, scanning electron and confocal microscopies were used to completely map the structure of the resulting membranes evidencing a complete homogenous structure. The membranes were also characterized in terms of contact angle (CA), Fourier trans -formed infrared spectroscopy (FTIR), mechanical resistance and swelling degree (uptake). Preliminary perva-poration tests for the separation of a methanol (MeOH)-methyl tert-butyl ether (MTBE) azeotropic mixture were, thus, performed. In this regard, the addition of DESs provided an enhanced separation efficiency in comparison to pristine CS membranes. Thanks to the morphology and properties exhibited, the newly developed membranes can be considered as excellent bio-based candidates to be explored in other gas selective and solvent oriented membrane operations.

Deep eutectic solventsMembrane preparationChitosanMethanolMTBEPervaporationTERT-BUTYL ETHERMIXED MATRIX MEMBRANESCROSS-LINKINGMIXTURESMETHANOLLIQUIDPERFORMANCEETHANOLBINARYFILMS

Castro-Munoz, Roberto、Msahel, Asma、Galiano, Francesco、Serocki, Marcin、Ryl, Jacek、Ben Hamouda, Sofiane、Hafiane, Amor、Boczkaj, Grzegorz、Figoli, Alberto

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Gdansk Univ Technol

CERTE

ITM CNR

2022

Separation and Purification Technology

Separation and Purification Technology

EISCI
ISSN:1383-5866
年,卷(期):2022.281
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