At Blade2Circ, we are strongly committed to developing innovative, bio-based materials that enable a more circular and sustainable future for wind turbine blades. These advanced solutions are designed to improve recyclability and address end-of-life challenges in the wind energy sector.
However, innovation alone is not enough. For new materials to create real impact beyond the laboratory, scalability is a critical factor. Research outcomes must be translated into materials that can be produced at sufficient volumes, meet strict quality requirements, and be validated under real industrial conditions.
In this context, MOSES plays a fundamental role within the project. Their key contribution focuses on scaling up advanced resins and materials used in structural components, adhesives, and coatings. This work ensures that the developed formulations:
- Maintain high and consistent quality standards
- Can be produced in volumes suitable for testing and validation
- Are viable for future industrial adoption
By addressing scalability from the earliest stages of development, MOSES helps maximize the scientific, social, and economic impact of Blade2Circ’s research activities. This approach increases the likelihood that sustainable innovations can successfully reach the market and be applied across multiple sectors and industrial applications.
Through this essential scaling phase, MOSES helps transform innovation into tangible results, supporting the transition toward a more circular, sustainable, and future-ready wind energy sector.
Stay tuned for more updates as we continue our work to transform the wind energy industry and create a greener, more sustainable future.







