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  • Home News Leitwind Adopts Recyclamine Technology for Recyclable Wind Turbine Blades

    Leitwind Adopts Recyclamine Technology for Recyclable Wind Turbine Blades

    BY Composights

    Published: 25 Apr 2026

    Leitwind has adopted Recyclamine technology for the development of recyclable wind turbine blades, marking a step toward integrating circular solutions in composite manufacturing for wind energy applications.

    The recyclable epoxy system, developed by Aditya Birla Advanced Materials, is being incorporated into both the resin system and bonding paste used in blade production. These materials form critical structural components of wind turbine blades. 

    The integration of Recyclamine enables the recovery of composite materials at end of life, addressing one of the key challenges associated with large-scale wind turbine blades. By embedding recyclability into the manufacturing process, the approach supports the development of more sustainable composite structures. 

    Initial production is underway for prototype blades under the LS20.X_MK2 platform, designed for use in Leitwind s LTW42 wind turbine system. The blades are expected to undergo structural validation and certification testing as part of the development process. 

    The adoption of recyclable epoxy systems highlights the increasing focus on sustainability in the wind energy sector, particularly as the industry addresses end-of-life management of composite materials used in turbine blades.

    Source: Recyclamine | Article and Blogs

    Home News Leitwind Adopts Recyclamine Technology for Recyclable Wind Turbine Blades

    Leitwind Adopts Recyclamine Technology for Recyclable Wind Turbine Blades

    BY Composights

    Published: 25 Apr 2026

    Leitwind has adopted Recyclamine technology for the development of recyclable wind turbine blades, marking a step toward integrating circular solutions in composite manufacturing for wind energy applications.

    The recyclable epoxy system, developed by Aditya Birla Advanced Materials, is being incorporated into both the resin system and bonding paste used in blade production. These materials form critical structural components of wind turbine blades. 

    The integration of Recyclamine enables the recovery of composite materials at end of life, addressing one of the key challenges associated with large-scale wind turbine blades. By embedding recyclability into the manufacturing process, the approach supports the development of more sustainable composite structures. 

    Initial production is underway for prototype blades under the LS20.X_MK2 platform, designed for use in Leitwind s LTW42 wind turbine system. The blades are expected to undergo structural validation and certification testing as part of the development process. 

    The adoption of recyclable epoxy systems highlights the increasing focus on sustainability in the wind energy sector, particularly as the industry addresses end-of-life management of composite materials used in turbine blades.

    Source: Recyclamine | Article and Blogs