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Article

Stability of Filled PDMS Pervaporation Membranes in Bio-Ethanol Recovery from a Real Fermentation Broth

1
Membrane Technology Group, Centre for Membrane Separations, Adsorption, Catalysis and Spectroscopy for Sustainable Solutions (cMACS), Department of Microbial and Molecular Systems, KU Leuven, Celestijnenlaan 200F, 3001 Leuven, Belgium
2
Laboratory of Enzyme, Fermentation and Brewery Technology, Cluster for Bioengineering Technology, Department of Microbial and Molecular Systems, KU Leuven, Gebroeders De Smetstraat 1, 9000 Ghent, Belgium
3
Research Group Molecular Odor Chemistry, KU Leuven Technology Campus Ghent, Gebroeders De Smetstraat 1, 9000 Ghent, Belgium
*
Author to whom correspondence should be addressed.
Membranes 2023, 13(11), 863; https://doi.org/10.3390/membranes13110863
Submission received: 24 August 2023 / Revised: 18 September 2023 / Accepted: 4 October 2023 / Published: 27 October 2023

Abstract

Mixed matrix membranes (MMMs) have shown great potential in pervaporation (PV). As for many novel membrane materials however, lab-scale testing often involves synthetic feed solutions composed of mixed pure components, overlooking the possibly complex interactions and effects caused by the numerous other components in a real PV feed. This work studies the performance of MMMs with two different types of fillers, a core-shell material consisting of ZIF-8 coated on mesoporous silica and a hollow sphere of silicalite-1, in the PV of a real fermented wheat/hay straw hydrolysate broth for the production of bio-ethanol. All membranes, including a reference unfilled PDMS, show a declining permeability over time. Interestingly, the unfilled PDMS membrane maintains a stable separation factor, whereas the filled PDMS membranes rapidly lose selectivity to levels below that of the reference PDMS membrane. A membrane autopsy using XRD and SEM-EDX revealed an almost complete degradation of the crystalline ZIF-8 in the MMMs. Reference experiments with ZIF-8 nanoparticles in the fermentation broth demonstrated the influence of the broth on the ZIF-8 particles. However, the observed effects from the membrane autopsy could not exactly be replicated, likely due to distinct differences in conditions between the in-situ pervaporation process and the ex-situ reference experiments. These findings raise significant questions regarding the potential applicability of MOF-filled MMMs in real-feed pervaporation processes and, potentially, in harsh condition membrane separations in general. This study clearly confirms the importance of testing membranes in realistic conditions.
Keywords: pervaporation; bio-ethanol; metal–organic framework; stability; PDMS; MMM pervaporation; bio-ethanol; metal–organic framework; stability; PDMS; MMM

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MDPI and ACS Style

Van Goethem, C.; Naik, P.V.; Van de Velde, M.; Van Durme, J.; Verplaetse, A.; Vankelecom, I.F.J. Stability of Filled PDMS Pervaporation Membranes in Bio-Ethanol Recovery from a Real Fermentation Broth. Membranes 2023, 13, 863. https://doi.org/10.3390/membranes13110863

AMA Style

Van Goethem C, Naik PV, Van de Velde M, Van Durme J, Verplaetse A, Vankelecom IFJ. Stability of Filled PDMS Pervaporation Membranes in Bio-Ethanol Recovery from a Real Fermentation Broth. Membranes. 2023; 13(11):863. https://doi.org/10.3390/membranes13110863

Chicago/Turabian Style

Van Goethem, Cédric, Parimal V. Naik, Miet Van de Velde, Jim Van Durme, Alex Verplaetse, and Ivo F. J. Vankelecom. 2023. "Stability of Filled PDMS Pervaporation Membranes in Bio-Ethanol Recovery from a Real Fermentation Broth" Membranes 13, no. 11: 863. https://doi.org/10.3390/membranes13110863

APA Style

Van Goethem, C., Naik, P. V., Van de Velde, M., Van Durme, J., Verplaetse, A., & Vankelecom, I. F. J. (2023). Stability of Filled PDMS Pervaporation Membranes in Bio-Ethanol Recovery from a Real Fermentation Broth. Membranes, 13(11), 863. https://doi.org/10.3390/membranes13110863

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