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◆ ACS Applied Polymer Materials2026-02-12· Pervaporation

Highly Efficient Pervaporation Dehydration of Isopropanol Using Gd-BTC Modified Sodium Alginate Mixed Matrix Membranes

Roman Dubovenko, Mariia Dmitrenko, Anna Kuzminova, Maria A. Muratidi, Anna Mikulan, M.V. Kalmakhelidze, Elizaveta Mukhanova, Anastasia Penkova

原始摘要(英文原文)· Original abstract
This study presents, for the first time, a comprehensive investigation of gadolinium-based metal–organic framework (Gd-BTC) as a filler in sodium alginate (SA) membranes for pervaporation dehydration of isopropanol (IPA). A series of dense and supported mixed matrix membranes were fabricated and characterized. The optimal dense SA/Gd-BTC(20 wt %) membrane demonstrated an up to 2.3-fold increase in permeation flux over the pristine SA membrane for separation of water–IPA mixtures, while maintaining high selectivity (>99.5% water in the permeate). Subsequent cross-linking with CaCl 2 further improved the selectivity and operational stability of this membrane. Furthermore, a cross-linked supported membrane from SA/Gd-BTC(20 wt %) on porous polyacrylonitrile substrate was engineered, achieving an exceptionally high permeation flux of up to 2 kg m –2 h –1 . The enhanced performance is attributed to improved membrane hydrophilicity, favorable polymer–filler interactions leading to morphological changes, and polymer reorganization during cross-linking, as confirmed by FTIR, XRD, SEM, AFM, DFT calculations, and other techniques. A comparison of the transport properties of the developed membranes with those reported in the literature highlights Gd-BTC as a highly promising filler for overcoming the permeability–selectivity trade-off, providing an effective strategy for energy-efficient industrial alcohol dehydration.
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