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ConFluReM

Controlling Fluid Resistances at Membranes

CoordinatorWessling, Matthias
Grant period2016-09-01 - 2021-08-31
Funding bodyEuropean Union
Call numberERC-2015-AdG
Grant number694946
Further information: Homepage
IdentifierG:(EU-Grant)694946

Note: Today’s materials research in the field of synthetic membranes gives access to highly permeable and extremely selective membranes. However, their potential will remain ineffective as high and selective transport rates always go along with resistances emerging at the membrane fluid interface in the form diffusion limitations in the laminary boundary layers. In order to make full use of the very many new materials, also new means to control and minimize such fluid based resistances need to be developed. Yet another phenomena disturbs the full potential use of membranes: retained solutes, colloids and biological matter accumulates at the membrane interface and causes irreversible fouling and scaling. The proposed research aims to develop a rigorous translational methodology to control and improve mass transport through the fluid/membrane interface. ConFluReM will establish Strategic Tools and New Instruments to: (1) comprehend and quantify the prevalent mass transport resistances in representative membrane separation processes, (2) synthesize and fabricate new nano-, micro- and mesoscale material and device systems as instruments to control and overcome the limitations of concentration polarization and fouling, Strategic Tools are experimental and simulation methods to quantify and engineer the mass transport and hydrodynamical properties of the new membrane systems. These encompass flow imaging (flowMRI, microPIV and microfluidic transport studies) as well as computational fluidic dynamics (CFD and CFDEM). New Instruments are synthetic and fabrication means as well as process condition means to improve mixing at the membrane/fluid interface. These encompass (a) lateral patterning of chemical topology of the membrane surface by printing and stamping, (b) shaping the 3D geometry of channels using additive manufacturing techniques and (c) imposing dynamical gradients to destablize fluid side resistances.
   

Recent Publications

All known publications ...
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http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;
Visualization of CO formation at the triple-phase boundary in gas diffusion electrodes for ecCO2RR
Chem 102582 () [10.1016/j.chempr.2025.102582]  GO  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;
Fluid distribution in artificially manufactured porous mixed-wetting materials as a model for gas diffusion electrodes
Chemical engineering science 309, 121465 () [10.1016/j.ces.2025.121465]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;  ;
Enhanced Hemodynamics of Anisometric TPMS Topology Reduce Blood Clotting in 3D Printed Blood Contactors
Advanced healthcare materials 144(2), 2403111 () [10.1002/adhm.202403111]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;
Spatio‐Temporal Electrowetting and Reaction Monitoring in Microfluidic Gas Diffusion Electrode Elucidates Mass Transport Limitations
Small : nano micro 20(29), 2310427 () [10.1002/smll.202310427]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;
Titanium-Based Static Mixer Electrodes to Improve the Current Density of Slurry Electrodes
ChemElectroChem 10(3), e202200928 () [10.1002/celc.202200928]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;
On the interaction of electroconvection at a membrane interface with the bulk flow in a spacer-filled feed channel
Journal of membrane science 678, 121589 () [10.1016/j.memsci.2023.121589]  GO BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Dissertation / PhD Thesis/Book  ;  ;
Visualization of complex flow phenomena in multichannel membrane modules
Aachen : RWTH Aachen University, Aachener Verfahrenstechnik series - AVT.CVT - chemical process engineering 34(2023), 1 Online-Ressource : Illustrationen, Diagramme () [10.18154/RWTH-2022-11651] = Dissertation, Rheinisch-Westfälische Technische Hochschule Aachen, 2022  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Dissertation / PhD Thesis/Book  ;  ;
Flow fields in the overlimiting current regime in electrically-driven membrane processes
Aachen : RWTH Aachen University, Aachener Verfahrenstechnik series - AVT.CVT - Chemical Process Engineering 32 (2022), 1 Online-Ressource : Illustrationen, Diagramme () [10.18154/RWTH-2022-11194] = Dissertation, Rheinisch-Westfälische Technische Hochschule Aachen, 2022  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;
Micromodel of a Gas Diffusion Electrode Tracks In‐Operando Pore‐Scale Wetting Phenomena
Small : nano micro 18(49), 2204012 () [10.1002/smll.202204012]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Dissertation / PhD Thesis/Book  ;  ;
From fundamentals of transport in flow electrodes at membrane interfaces to application
Düren : Shaker Verlag, Aachener Verfahrenstechnik series - AVT.CVT - chemical process engineering 25 (2022), : 1, xi, 209 Seiten : Illustrationen, Diagramme () = Dissertation, RWTH Aachen University, 2021  GO BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Record created 2021-06-08, last modified 2023-02-11


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