SuperClean | Superhydrophobic membranes for clean water production

Summary
Our world faces an urgent need for a greener industry with reduced water consumption and zero pollution, alleviating water scarcity problems. Membrane distillation (MD) is being explored for production of clean water from industrial waste streams in the steel, textile, food and other industries. Several challenges need to be overcome to achieve a full commercial market breakthrough for MD: Membrane wetting, scaling, and fouling. We plan to accept the challenges by using superhydrophobic membranes. Such membranes are also useful in oil-water separation, and a range of environmental applications. During the FET “HARMONIC” project, two RORs Max Planck-MPIP and NCSR-Demokritos developed complementary technologies for membrane superhydrophobicity, which impart extreme antiwetting, antiscaling and antifouling membranes. The technologies are based on plasma activation or plasma nanotexturing (NCSRD) followed by wet nanofilament growth (MPIP) or plasma deposition (NCSRD) for hydrophobization. Both institutions will advance their technology readiness level so the technology is validated - demonstrated in relevant environment (TRL 5-6), and will design, build, and test small scale pilot equipment for fabricating rolls of superhydrophobic membranes in a roll-to-roll format. For the upscaling of the technology NCSRD and MPIP, will cooperate with two industrial partners, namely Europlasma and SolSep respectively companies with large experience with roll-to-roll plasma or wet processes respectively. Moreover, they will team up with SolarSpring, a manufacturer of commercial MD modules for industrial wastewater treatment. A market search and a business plan will be elaborated, for creating a spin-off company commercializing the superhydrophobic membranes, and processes. The range of applications will go well beyond MD.
Unfold all
/
Fold all
More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101099381
Start date: 01-01-2023
End date: 31-12-2025
Total budget - Public funding: 2 497 750,00 Euro - 2 497 750,00 Euro
Cordis data

Original description

Our world faces an urgent need for a greener industry with reduced water consumption and zero pollution, alleviating water scarcity problems. Membrane distillation (MD) is being explored for production of clean water from industrial waste streams in the steel, textile, food and other industries. Several challenges need to be overcome to achieve a full commercial market breakthrough for MD: Membrane wetting, scaling, and fouling. We plan to accept the challenges by using superhydrophobic membranes. Such membranes are also useful in oil-water separation, and a range of environmental applications. During the FET “HARMONIC” project, two RORs Max Planck-MPIP and NCSR-Demokritos developed complementary technologies for membrane superhydrophobicity, which impart extreme antiwetting, antiscaling and antifouling membranes. The technologies are based on plasma activation or plasma nanotexturing (NCSRD) followed by wet nanofilament growth (MPIP) or plasma deposition (NCSRD) for hydrophobization. Both institutions will advance their technology readiness level so the technology is validated - demonstrated in relevant environment (TRL 5-6), and will design, build, and test small scale pilot equipment for fabricating rolls of superhydrophobic membranes in a roll-to-roll format. For the upscaling of the technology NCSRD and MPIP, will cooperate with two industrial partners, namely Europlasma and SolSep respectively companies with large experience with roll-to-roll plasma or wet processes respectively. Moreover, they will team up with SolarSpring, a manufacturer of commercial MD modules for industrial wastewater treatment. A market search and a business plan will be elaborated, for creating a spin-off company commercializing the superhydrophobic membranes, and processes. The range of applications will go well beyond MD.

Status

SIGNED

Call topic

HORIZON-EIC-2022-TRANSITIONOPEN-01

Update Date

09-02-2023
Images
No images available.
Geographical location(s)
Structured mapping
Unfold all
/
Fold all
Horizon Europe
HORIZON.3 Innovative Europe
HORIZON.3.1 The European Innovation Council (EIC)
HORIZON.3.1.0 Cross-cutting call topics
HORIZON-EIC-2022-TRANSITION-01
HORIZON-EIC-2022-TRANSITIONOPEN-01 EIC Transition Open 2022