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1. Bio-based sustainable protective coating for concrete infrastructure  

Development of a durable protective coating for underground and above-ground concrete infrastructure based on epoxy, polyurethane, and polyurea systems containing at least 50% bio-based raw materials, improving durability, barrier performance, and environmental footprint.

2. Autonomous robotic system for infrastructure inspection and repair (AMMMV) 

Development of an integrated robotic platform capable of autonomous defect detection, marking, and repair of concrete and metal infrastructure, combining inspection and maintenance in a single optimized operational mission.

3. High-performance coatings for Hyperloop and vacuum transport systems 

Development of advanced coating systems for next-generation transport infrastructure, ensuring gas leakage below 10⁻⁵ mbar/s/m² under vacuum conditions and enabling safe, efficient operation of Hyperloop-like technologies.

4. Sustainable materials innovation and environmental performance improvement 

Reduction of hazardous solvent content by at least 30% and improvement of coating durability by 15%, supporting greener formulation strategies and compliance with future sustainability and infrastructure standards.

5. Capacity building, early-career researchers and gender equality in advanced materials research

Strengthening research capacity by involving young scientists and increasing participation of women researchers, fostering mentorship structures, international exchanges, and inclusive career development within the project consortium.