Systems made from recycled WPC 100%
RIGENERA is the newest contribution from Woodn Greenwood For increasingly sustainable architecture. A collection of profiles and systems made from recycled wood composite, manufactured using 100% secondary raw materials.
Thanks to the recovery of end-of-life WPC from the slats, RIGENERA guarantees high performance in both outdoor and indoor environments.
Versatile and durable, these systems are perfect for decking, sunshades, wall cladding, ceilings, and false ceilings.
A blend of design, ecology, and functionality that transforms any space into an elegant, modern, and efficient environment.
Woodn Greenwood has developed an innovative production process that respects the principles of the circular economy. Water and energy autonomy further helps to contain the environmental impact in the production of RIGENERA systems.
The entire daytime energy requirement of the industrial plant is met by photovoltaic panels, distributed over an area of 3,000 square meters and producing 311,000 kWh per year.
The water used to cool the extrusion lines of the RIGENERA cycle is rigorously managed by a new-generation closed-loop system, which collects and reintroduces it into production, eliminating any waste.
Periodically, Woodn Greenwood recovers process materials and collects end-of-life profiles, cleans them, sorts them by color, and transforms them into new WPC.
The company has internally designed and exclusively manufactured a double-grinding plant for WPC recycling: in the first phase, end-of-life profiles are coarsely shredded, while in the second phase, the materials are pulverized for reuse.
Finally, the regenerated grain is extruded into two dedicated lines for the Rigenera cycle, to create profiles and systems for indoor and outdoor applications, with technical and aesthetic performance equivalent to those of first-life WPC.
The Rigenera project was created from the possibility of reintroducing non-compliant extruded products into the production chain. The project is funded by the ERDF 2021-2027.