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Strategic partnership for chemically recycled PET

Strategic partnership for chemically recycled PET

News 24.01.2025
2025 01 23 OERLIKON BARMAG EVONIK 16x9
Managers of Oerlikon Barmag and Evonik. Photo: ©Oerlikon Barmag

Oerlikon Barmag and Evonik have announced their cooperation to promote chemical recycling of Polyethylene terephthalate (PET) waste. Both companies are committed to develop technologies for robust and efficient depolymerisation and purification processes, coupled with an integrated concept for repolymerisation and the associated EPC business models.

Together for a sustainable circular economy in the plastics industry
Oerlikon Barmag and Evonik are both leading suppliers in their respective key markets. The Remscheid-based machine and plant manufacturer Oerlikon Barmag contributes its expertise in polymer processing for the production of chemical fibers and packaging materials to the new partnership. In addition, as a core brand of Oerlikon Manmade Fibers Solutions of the Swiss Oerlikon Group, the company has excellent international market access in the polymer processing industry.

Evonik is one of the world's leading manufacturers of specialty chemicals, dedicated to driving sustainability initiatives and developing next-generation solutions. The partnership with Oerlikon Barmag aims to advance technology and process solutions for the chemical recycling of PET, leveraging innovative catalytic processes.

The partners plan to fully launch and commercialize the jointly developed chemical recycling technology solution by the end of the current decade. The intensive involvement and active participation of other companies within the ecosystem (including feedstock, technology and production) and the establishment of a global development partner network are planned.

Seamless integration into PET production processes

The PET recycling technology will bring numerous advantages. From a chemical perspective it is a highly efficient process, and it can be seamlessly integrated into existing PET production processes. Operational costs, investment cost and scalability are the key drivers in the development.

The combination of cooperational know-how in catalyst and process technologies will allow a chemical recycling of polyester materials from many closed- and open-loop sources, which need chemical technology to allow for high, fossil-like recyclate qualities.

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