Expertises

  • Chemical Engineering

    • Fouling
    • Reverse Osmosis
    • Water
    • Ultrafiltration
    • Nanofiltration
    • Filtration
  • Engineering

    • Membrane
  • Chemistry

    • Water Type

Organisaties

In oktober 1995 ben ik gepromoveerd aan de Universiteit Twente op de stabiliteit van supported liquid membranes. Na 1 jaar in Wageningen gewerkt te hebben aan de toepassing van membranen in de voedingsmiddelenindustrie, ben ik in december 1996 teruggekeerd in Twente om te werken als onderzoeker bij het European Membrane Institute (EMI) Twente (www.utwente.nl/en/tnw/emi/). Sinds 2007 ben ik weer werkzaam in de academische wereld, waar ik werk op het gebied van waterfiltratie met behulp van membranen, met speciale aandacht voor membraanvervuiling. Hier werk ik nog steeds aan. ÉÊn dag per week ben ik gedetacheerd als membraanexpert bij Wetsus, european centre of excellence for sustainable water technology (www.wetsus.nl), in Leeuwarden.

Publicaties

Jump to: 2025 | 2024 | 2023 | 2022

2025

Separation of monovalent salts by reverse osmosis modules: A 2D mass transport model based on solution friction theory (2025)Desalination, 600. Article 118429. Kimani, E. M., Kemperman, A. J. B., Porada, S., Biesheuvel, P. M. & van der Meer, W. G. J.https://doi.org/10.1016/j.desal.2024.118429Assessing the viability of bio-based adsorbents for PFAS removal (2025)Chemical engineering science, 306. Article 121215. Roman, J. B., Kemperman, A. J. B., van der Meer, W. G. J. & Wood, J. A.https://doi.org/10.1016/j.ces.2025.121215Influence of Particulate Transport on Filtration Experiments in a Vertical Filter Vessel (2025)Industrial & engineering chemistry research (E-pub ahead of print/First online). Roman, J. B., Kemperman, A. J. B., van der Meer, W. G. J. & Wood, J. A.https://doi.org/10.1021/acs.iecr.4c04519Membrane Concentrate Recirculation to Activated Sludge: Balancing Organic Micropollutant Removal and Salt Retention (2025)ACS Environmental Science and Technology Water, 5(1), 284-299. Wendt, H. D., Jonkers, W. A., Kemperman, A. J. B., Langenhoff, A. A. M., Lammertink, R. G. H., van der Meer, W. G. J. & de Vos, W. M.https://doi.org/10.1021/acsestwater.4c00841

2024

Enzymatic and non-enzymatic removal of organic micropollutants with spent mushroom substrate of Agaricus bisporus (2024)Applied Microbiology and Biotechnology, 108(1). Article 301. van Brenk, B., Kleijburg, F. E. L., Kemperman, A. J. B., van der Meer, W. G. J. & Wösten, H. A. B.https://doi.org/10.1007/s00253-024-13132-3Data repository for manuscript "Separation of monovalent salts by reverse osmosis module: A 2D mass transport model based on solution friction theory" (2024)[Dataset Types › Dataset]. 4TU.Centre for Research Data. Kimani, E., Kemperman, A. J. B., Porada, S., Biesheuvel, M. & van der Meer, W. G. J.https://doi.org/10.4121/83df4d6e-26a4-44a4-8913-e185ba01ebecDiscoloration of textile dyes by spent mushroom substrate of Agaricus bisporus (2024)Bioresource technology, 402. Article 130807. van Brenk, B., Kruidhof, L., Kemperman, A. J. B., van der Meer, W. G. J. & Wösten, H. A. B.https://doi.org/10.1016/j.biortech.2024.130807A hybrid process combining ion exchange resin and bipolar membrane electrodialysis for reverse osmosis remineralization (2024)Desalination, 573. Article 117209. Abusultan, A. A. M., Wood, J. A., Sainio, T., Kemperman, A. J. B. & van der Meer, W. G. J.https://doi.org/10.1016/j.desal.2023.117209

2023

A hybrid ion exchange resin - bipolar membrane electrodialysis process for reverse osmosis permeate remineralization (2023)[Thesis › PhD Thesis - Research UT, graduation UT]. University of Twente. Abusultan, A. A.https://doi.org/10.3990/1.9789036558204Incorporation of an Intermediate Polyelectrolyte Layer for Improved Interfacial Polymerization on PAI Hollow Fiber Membranes (2023)Membranes, 13(8). Article 741. Restrepo, M. A., Mohammadifakhr, M., Kamp, J., Trzaskus, K., Kemperman, A. J. B., de Grooth, J., Roesink, H. D. W., Roth, H. & Wessling, M.https://doi.org/10.3390/membranes13080741Ion exchange resin – Bipolar membrane electrodialysis hybrid process for reverse osmosis permeate remineralization: Cation exchange resins equilibria and kinetics (2023)Separation and purification technology, 317. Article 123798. Abusultan, A. A. M., Wood, J. A., Sainio, T., Kemperman, A. J. B. & Meer, W. G. J. v. d.https://doi.org/10.1016/j.seppur.2023.123798Ion exchange resin – Bipolar membrane electrodialysis hybrid process for reverse osmosis permeate Remineralization: Preparative ion exchange chromatography for Ca2+ and Mg2+ recovery (2023)Separation and purification technology, 317. Article 123799. Abusultan, A. A. M., Wood, J. A., Sainio, T., Kemperman, A. J. B. & Meer, W. G. J. v. d.https://doi.org/10.1016/j.seppur.2023.123799Controlling scaling in groundwater reverse osmosis: Minimizing antiscalant consumption (2023)[Thesis › PhD Thesis - Research external, graduation UT]. University of Twente. Mangal, M. N.https://doi.org/10.3990/1.9789036555890

2022

The influence of feedwater pH on membrane charge ionization and ion rejection by reverse osmosis: An experimental and theoretical study (2022)Journal of membrane science, 660. Article 120800. Kimani, E. M., Pranić, M., Porada, S., Kemperman, A. J. B., Ryzhkov, I. I., Meer, W. G. J. v. d. & Biesheuvel, P. M.https://doi.org/10.1016/j.memsci.2022.120800Application of a smart dosing pump algorithm in identifying real-time optimum dose of antiscalant in reverse osmosis systems (2022)Journal of membrane science, 658. Article 120717. Mangal, M. N., Yangali-Quintanilla, V. A., Salinas-Rodriguez, S. G., Dusseldorp, J., Blankert, B., Kemperman, A. J. B., Schippers, J. C., Kennedy, M. D. & van der Meer, W. G. J.https://doi.org/10.1016/j.memsci.2022.120717

Onderzoeksprofielen

Adres

Universiteit Twente

Horst Complex (gebouwnr. 20), kamer ME323
De Horst 2
7522 LW Enschede

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Organisaties

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Op donderdagen werkzaam bij Wetsus, Leeuwarden.

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