Chemical recycling of biopolymers through catalytic depolymerization technology

Technology
Conceptual
University

Catalytic depolymerization technology that breaks down biopolymers into reusable monomers. Built on proven catalysts originally developed for lignin valorization, this approach offers a viable pathway to circular biopolymer recycling and recovery of valuable chemical building blocks.

Overview

This technology addresses the growing challenge of biopolymer waste by enabling chemical recycling through catalytic depolymerization. The approach breaks down biopolymers into their constituent monomers, creating a viable route to recover valuable chemical building blocks from end-of-life biopolymer materials. The core innovation is the application of catalysts originally developed and validated for lignin depolymerization, now being adapted for the broader biopolymer recycling challenge.

The solution targets a critical gap in the circular bioeconomy: while biopolymers offer renewable alternatives to conventional plastics, their end-of-life management remains a significant hurdle. By converting biopolymers back into monomers, this technology enables true closed-loop recycling and the production of valuable downstream chemicals.

Technical specifications
  • Catalyst-based depolymerization: Leverages catalysts previously validated for effective lignin depolymerization, adapted for biopolymer substrates
  • Monomer recovery: Designed to separate and recover monomers from depolymerized biopolymer streams
  • Downstream conversion capability: Includes the potential to convert recovered monomers into valuable chemicals when required
  • Film processing: Future validation targets include processing biopolymer films, expanding applicability beyond bulk materials
  • Catalyst transferability: The underlying hypothesis is that catalysts effective on lignin will perform similarly on biopolymers due to shared chemical structural characteristics
Technology readiness level

The technology is at an early-to-mid stage of development. The foundation is built on catalysts that have already been validated for lignin depolymerization, providing a degree of proven performance. Future validation work will focus on testing the catalytic depolymerization of biopolymer films, optimizing monomer separation processes, and exploring conversion pathways to valuable chemicals. Further development and scaling are needed before commercial deployment.


About University of Alberta

The University of Alberta is a large, comprehensive public research university in Edmonton with multiple campuses and a strong applied research culture. Industry engages through co-located labs and pilot-scale facilities, as well as established co-op and internship programs that place talent with partners year-round. Integration with Alberta’s province-wide hospital system supports clinical research and accelerates translation. Companies also benefit from proximity to regional industry clusters and collaboration hubs on and near campus for joint R&D and prototyping. Supported by NSERC, CIHR, SSHRC, and Canada Foundation for Innovation funding—plus provincial and industry support—the tech transfer office manages IP, licensing, and startup formation with streamlined sponsored-research agreements.

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