Pervaporation Zeolite-Based Composite Membranes for Solvent Separations

Композитные мембраны на основе цеолитов для первапорационного разделения растворителей
Roberto Castro‐Muñoz, Grzegorz Boczkaj
2021-02-25

azeotropic separationsmixed matrix membranespervaporationsolvent separationszeolite-based composite membranes
Thanks to their well-defined molecular sieving and stability, zeolites have been proposed in selective membrane separations, such as gas separation and pervaporation. For instance, the incorporation of zeolites into polymer phases to generate composite (or mixed matrix) membranes revealed important advances in pervaporation. Therefore, the goal of this review is to compile and elucidate the latest advances (over the last 2-3 years) of zeolite applications in pervaporation membranes either combining zeolites or polymers. Here, particular emphasis has been focused on relevant insights and findings in using zeolites in pervaporative azeotropic separations and specific aided applications, together with novel concepts of membranes. A brief background of the pervaporation process is also given. According to the findings of this review, we provide future perspectives and recommendations for new researchers in the field.
1
Incorporating zeolites into polymer phases to form composite or mixed-matrix membranes has produced important advances in pervaporation.
2
Recent research has particularly advanced zeolite-based membranes for pervaporative azeotropic separations and specialized assisted applications.
3
The review examines zeolite-only, polymer-combined, and novel membrane concepts developed during the previous two to three years.
4
The review identifies future perspectives and provides recommendations for researchers developing zeolite-based pervaporation membranes.
5
Zeolites provide molecular sieving and stability that support selective membrane separations, including pervaporation.

zeolite-based composite (mixed-matrix) membranes for pervaporative solvent separations

recent advances, molecular-sieving behavior, and separation performance of zeolite-containing pervaporation membranes, particularly in azeotropic and aided separations

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2021-02-25
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Roberto Castro‐Muñoz
Grzegorz Boczkaj
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