R&D - Project
COSVI Completed
Valorising wine lees to enhance the skin
Valorisation of yeasts from the winemaking process for the cosmetics sector.
RECYBER Completed
Advanced circular rubber
Develop an advanced circular rubber material with a reduced carbon footprint and improved end-of-life recyclability through the use of bio-based raw materials.
SUSAAN Completed
Development of antimicrobial and antiviral nano-coatings
The SUSAAN project is developing sustainable antimicrobial coatings for textiles and high-use surfaces, involving the textile, bathroom and switch sectors.
BIOSUPHYOL Completed
Development of bio-based and PFAS-free coatings
Development of non-toxic, bio-based (>80%) alternatives to PFAS to provide superhydrophobicity and oleophobicity to paper and textile packaging.
VALORBSY Completed
Brewery yeast valorized for nutritional ingredients as alternatives to animal proteins
The ValorBSY project aims for the sustainable valorization of residual yeast from craft breweries for the agri-food industry, combining collection technologies, targeted extraction, and the creation of new products.
GEPI4REE Completed
Recovery of rare earths from electronic waste
Specific microflotation system for rare earth ions for the development of a recovery and purification process for Neodymium from electronic waste.
DAF3D Completed
Antibacterial textiles and 3D filters for process water treatment.
The DAF3D project aims to develop and validate an antimicrobial filter combining functionalized textiles and 3D-printed supports for the treatment of process water at a demonstration scale.
AOPTi Completed
Photocatalytic Oxidation to Remove Micropollutants from Urban and Industrial Wastewater
Evaluation of the Advanced Photocatalytic Oxidation Process for Micropollutant Removal in Municipal and Industrial Wastewater Treatment Plants
BACZEREAU Completed
Innovative and energy-efficient disinfection for natural bathing areas.
The BACZEREAU project validates a UVA-Visible photocatalytic reactor to effectively disinfect wastewater by destroying pathogens via their cell wall rather than their DNA.
ALBAPRO Completed
Combined algae-bacteria process for low-energy wastewater treatment
The objective of the ALBAPRO project was the technical utilization of mixed microalgae-bacteria systems to treat municipal and industrial effluents and produce biomass for subsequent valorization.