Composite materials deliver exceptional strength, durability, and design freedom and they are increasingly used in infrastructure, mobility, and construction. Yet at the end of their service life, most composites are still landfilled or incinerated, wasting valuable resources and locking the industry into a linear model.
Reprocover 5.0 exists to end that paradox by making composite materials truly circular without compromising performance through an industrial, low‑carbon, and scalable approach that can be deployed across Europe.
By transforming waste into durable, lightweight, high‑performance solutions, we:
A Proven Step‑by‑Step Path to Industrial Maturity (1.0 → 5.0)
Reprocover 5.0 is not a lab concept. It is the result of a progressive industrial maturation, where each generation validated a critical milestone:
Reprocover 5.0 deploys robust, scalable, and local thermoset recycling hubs to launch the first industrial‑scale composite recycling lines supporting a circular and low‑carbon industry.
One production line can handle many product shapes and multiple material sources, even with a certain level of contamination. This robustness enables rapid adaptation to different markets while maintaining price competitiveness and guaranteeing consistent mechanical strength for demanding infrastructure applications.
Composite recycling operates at a much smaller scale than thermoplastics: thermoplastic recycling typically requires ≥ 50,000 tons/year, while Reprocover’s process is viable from < 4,000 tons/year.
Composites are also lightweight, making long‑distance transport (often beyond ~500 km) economically inefficient—strongly favoring local, decentralized production close to waste sources and markets.
Reprocover products are designed to be recycled again by Reprocover at end of life, ensuring true multi‑cycle circularity. In parallel, we collaborate with sorting lines to separate and remove composites with density > 1.08, enabling efficient reintegration into the recycling process.
Our decisions are guided by Life Cycle Assessment (LCA), systematically evaluating technical and material options to minimize carbon impact. Although LCA is still rarely required in tenders, Reprocover has already demonstrated measurable decarbonisation impact at European level under Innovation Fund 2025 – Net‑Zero Technologies.
Reprocover 5.0 deploys a next‑generation industrial facility designed to make composite materials even more circular. By combining advanced recycling and manufacturing technologies, the project transforms thermoset and thermoplastic waste today largely landfilled or incinerated into high‑value, recyclable products for infrastructure, construction, and the polymer industry.
At the core of Reprocover 5.0 is a fully integrated, automated process that converts complex composite waste directly into finished products and calibrated additives. The facility produces:
All outputs are designed for recyclability at end of life, enabling true multi‑cycle circularity.
The innovation goes beyond the state of the art by enabling at industrial scale a fully circular, efficient, and sustainable solution for thermoset waste, integrating:
Reprocover 5.0 delivers a replicable, modular factory model centralizing all production stages in a single site simplifying deployment across Europe and enabling rapid adaptation to market needs.
Starting operations in mid‑2029, Reprocover 5.0 will actively support the EU Green Deal, the Circular Economy Action Plan, and national low‑carbon strategies. Over ten years, the project is expected to:
The Reprocover 5.0 project aims to develop and deploy a fully automated composite recycling line with advanced process control, capable of operating reliably at industrial scale while remaining flexible and resource‑efficient.
The key research objectives are to:
• Achieve full automation of the recycling and manufacturing line, ensuring consistent quality, repeatability and reduced operational costs
• Integrate advanced process monitoring and control, enabling stable production despite more and more heterogeneous and contaminated waste inputs
• Increase market volume and address higher‑value applications, while maintaining economic viability at relatively low annual throughput
• Enable social impact, by combining automation with meaningful employment, training, and reintegration opportunities within a modern industrial environment
The development of Reprocover 5.0 addresses several critical challenges:
Reprocover’s technological development follows a progressive, risk‑controlled methodology, moving step by step from demonstrator‑scale validation to full industrial deployment.
Reprocover 4.0 represents the critical transition toward industrial scale. This phase focuses on:
Reprocover 4.0 acts as the final technical validation layer, confirming the readiness of the technology and process architecture before committing to full automation.
Based on the results of Reprocover 4.0, Reprocover 5.0 deploys a fully automated, integrated and scalable industrial line.
The final step consolidates all validated technologies into a single automated process, advanced process monitoring and control, the foundation for duplication of the line and the creation of a European network of composite recycling hubs.
This staged approach ensures technical robustness, industrial reliability and economic viability, while minimizing development risks and accelerating market deployment.
Florence BOUHY – Back officer officer
Sara EL MARZOUKI – Process and Production manger
Alexandre ORBAN – Production manager
Charles GÖBBELS – Managing director
Funded by the European Union. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or the European Climate, Infrastructure and Environment Executive Agency (CINEA). Neither the European Union nor the granting authority can be held responsible for them.