Industry

Pioneering circular solutions to achieve our goal of full circularity

To build a climate-resilient future, construction must go circular. We are supporting this shift through our customers' proven mechanical PU foam recycling. Additionally, we collaborate with partners to develop innovative chemical recycling technologies – helping reduce waste, conserve resources and maintain material performance.
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Mechanical Recycling: Transforming material leftovers into valuable resources

Mechanical recycling of rigid PU insulation boards is already a reality. Thanks to trusted partners, end-of-life foam boards can be collected, shredded and processed into new high-quality boards – while maintaining the material’s durability and thermal performance. This reduces the need for virgin raw materials and helps cut construction waste significantly.

One example: our partner puren transforms recycled PU into robust insulation boards, demonstrating how circularity and product quality can go hand in hand.

Closing the loop on PU insulation boards through mechanical recycling.
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Mechanical Recycling of PU insulation boards

Chemical recycling: unlocking circularity at scale

With the Circular Foam project – an EU-funded collaboration with 22 partners from nine countries – we advanced chemical recycling for PU rigid foams. The project demonstrated how processes like chemolysis and smart pyrolysis can break down used foams into base chemicals and rebuilt them into new, high-performance foam. This work demonstrated the potential for full circularity – especially for materials and applications where mechanical recycling isn’t feasible. Together with our research and industry partners, we laid the groundwork for a scalable, high-quality recycling model across Europe.

With the Circular Foam project, we're making significant strides in chemical recycling for rigid polyurethane foam, moving us closer to our vision of full circularity.

Fernando Resende

Marketing Manager Building & Construction at Performance Materials, Covestro

Sustainable innovation in action

The CIRCULAR FOAM project¹ worked to advance PU rigid foam recycling. Led by Covestro, the initiative developed two recycling methods, chemolysis and smart pyrolysis, to recover high-quality polyols and amines for reuse in new foam production.

With partners including RWTH Aachen University, ETH Zurich, BioBTX and the University of Groningen, the project explored how these processes can be scaled for industrial use. Covestro contributed vital expertise from its pilot work on chemically recycling flexible mattress foams.

Circular Foam (circular-foam.eu) 

At a glance: how circularity becomes reality

Key Benefits

  • Waste with potential: Rigid PU foams are collected, shredded and recycled into new insulation boards.
  • Reused PU foams: The Circular Foam project breaks PU foam down to its molecules & uses them anew.
  • Circularity in Europe: Covestro works with 22 partners across Europe on scalable recycling methods.
  • Testing for tomorrow: Pilot plants and testing facilities for PU recycling are already running.
  • Local collaborations: Regional partnerships with waste collectors support reliable material return.


Circularity in construction is not a vision – it’s happening right now. Learn more about our commitment to circularity.

Read more about circularity & our CQ products!

  • A more sustainable high-rise building that integrates gardens into its façade.
    Story

    Embodied carbon reduction I Building the next stage of sustainability

    Reduce embodied carbon in the life cycle of buildings with PU/PIR insulation materials. Learn more now!

  • Laboratory setup with researcher holding a flask.
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    Smart Pyrolysis: Chemical Recycling for PU Rigid Foam

    Covestro and Fraunhofer UMSICHT breakthrough: Smart pyrolysis transforms PU rigid foam waste (PUR/PIR) into high-purity re-aniline, enabling circular MDI production. Learn more.

Explore our other essential areas:

 1 Emissions reduction based on internal LCA calculations stages A1-A3 (cradle-to-gate) according to the EN15804+A2 standard using a mass balance approach. 

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