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The effect of 3D printing parameters on electrochemical properties of heterogeneous cation exchange membrane

Lucie Zárybnická (Department of Technical Studies, College of Polytechnics Jihlava, Tolstého, Jihlava, Czech Republic)
Eliška Stránská (Membrain, Pod Vinicí, Stráž pod Ralskem, Czech Republic)
Kristýna Janegová (Membrain, Pod Vinicí, Stráž pod Ralskem, Czech Republic)
Barbora Vydrová (Membrain, Pod Vinicí, Stráž pod Ralskem, Czech Republic)

Rapid Prototyping Journal

ISSN: 1355-2546

Article publication date: 2 August 2021

Issue publication date: 2 September 2021

112

Abstract

Purpose

The study aims to focus on the preparation of a heterogeneous cation exchange membrane by a three-dimensional (3D) method – fused filament fabrication using a series of nozzles of various diameters (0.4–1.0 mm). Polypropylene random copolymer (PPR) as a polymeric binder was mixed with 50 Wt.% of the selected conventional cation exchange resin, and a filament was prepared using a single screw mini extruder. Then filament was processed by FFF into the membranes with a defined 3D structure.

Design/methodology/approach

Electrochemical properties, morphology, mechanical properties and water absorption properties were tested.

Findings

Dependence of the tested properties on the used nozzle diameter was found. Both areal and specific resistances increased with increasing nozzle diameter. The same trend was also found for permselectivity. The optimal membrane with permselectivity above 90%, areal resistance of 8 O.cm2 and specific resistance of 124 O.cm2 was created using a nozzle diameter of 0.4 mm.

Originality/value

Using new materials for 3D print of cation exchange membrane with production without waste. The possibility of producing 3D membranes with a precisely defined structure and using a cheap 3D printing method. New direction of membrane structure formation. 3D-printed heterogeneous cation exchange membranes were prepared, which can compete with commercial membranes produced by conventional technologies. 3D-printed heterogeneous cation exchange membranes were prepared, which can compete with commercial membranes produced by conventional technologies.

Keywords

Acknowledgements

The work was carried out within the framework of the project No. FW01010292 “Development of innovative components of electromembrane modules using additive technologies” supported by the program TACR.

Citation

Zárybnická, L., Stránská, E., Janegová, K. and Vydrová, B. (2021), "The effect of 3D printing parameters on electrochemical properties of heterogeneous cation exchange membrane", Rapid Prototyping Journal, Vol. 27 No. 8, pp. 1538-1547. https://doi.org/10.1108/RPJ-08-2020-0207

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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