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Formic acid- Feedstock
- End product
- Agriculture
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- Bioester polyols
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- Butadiene
- Carbon fibres
- Cellulose nanowhiskers
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- Chitin nanowhiskers
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- Food and drink packaging
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- Nano additives
- PHA
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Running Projects
- AC2GEN
- Bio Base Advance
- Bio Base Demo
- Bio Base Release
- Bio Base Transition
- BIOMAC
- Bionanopolys
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- COMBO
- CO2SMOS
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All Projects
CO2PERATE
- (Inter)Cluster, Bioplastics, Biopolymers, CCU, CO2, Catalisti-ISBO, Feed, Fermentation, Finished projects, Food, Formic acid, Gas fermentation, Gasses, H2, Low TRL, Other feedstock, PHA, PHB, Partner, Polymers and packaging and biomaterials, Process development (TRL 4-5), Product recovery and purification, Regional-flanders, Single cell protein, Specialty chemicals, Waste gasses
CO2PERATE aims to develop catalytic technologies to convert CO2 into formic acid, using renewable electricity. Formic acid will subsequently be used as building block for the biosynthetic production of value-added chemicals, as a building block for the chemical industry, or as a potential carrier for energy storage.
Read More- (Inter)Cluster, Bioplastics, Biopolymers, CCU, CO2, Catalisti-ISBO, Feed, Fermentation, Finished projects, Food, Formic acid, Gas fermentation, Gasses, H2, Low TRL, Other feedstock, PHA, PHB, Partner, Polymers and packaging and biomaterials, Process development (TRL 4-5), Product recovery and purification, Regional-flanders, Single cell protein, Specialty chemicals, Waste gasses
Ongoing projects
- AC2GEN
- Bio Base Advance
- Bio Base Demo
- Bio Base Release
- Bio Base Transition
- BIOMAC
- Bionanopolys
- CAPTUS
- CIRCALGAE
- CIRCLE
- COMBO
- CO2SMOS
- ECHO
- ELLIPSE
- EnzyMares
- FLEXIZYME
- FUCATIL
- FUELPHORIA
- Green-B2B-2
- HiPProFib
- HYBRID
- ICONIC
- LAPLACE
- LUCRA
- My-Fi
- Microbial Protein Transition
- MiProCas
- MUCOFORM
- NEXT-STEP
- Pilots4U powered by COPILOT
- POLYMEER
- PROMOFER
- REPurpose
- ROBOCOOP-EU
- SECRETed
- ShapingBio
- SURFs UP
- SYMBA
- UPLIFT
- WASTE2FUNC
- YAF