Join Dr. Maurizio Crippa, Founder and Chief Scientific Officer of GR3N, for a deep dive into the chemical realities required to achieve a true circular economy. For decades, global sustainability initiatives relied on traditional mechanical recycling—a process that cuts polymer chains, degrades material quality, and inevitably results in plastic downcycling and eventual landfill disposal. Maurizio argues that to close the loop on complex human waste, we must move past these physical limitations and embrace advanced chemical recycling. Drawing from a distinguished career in materials science and his tenure as Vice President of Chemical Recycling Europe, Maurizio breaks down how GR3N uses a proprietary microwave-assisted technology to split PET plastics and polyester textiles back into their virgin-quality chemical building blocks, and why building deep-tech environmental infrastructure requires a complete shift in both societal mindsets and patient capital.
🎯 Insights You’ll Learn:
The Limitations of Sorting: Why mechanical recycling fundamentally breaks down when faced with complex, multi-layer food packaging and mixed-fiber post-consumer textile waste.
The Microwave-Assisted Depolymerization Breakthrough: How GR3N’s patented MADE (Microwave Assisted DEpolymerisation) platform utilizes specific electromagnetic frequencies to deconstruct polyethylene terephthalate (PET) into its original monomers (TPA and MEG) in a fraction of traditional process times.
The Virgin-Like Standard: Why achieving a true circular loop requires generating recycled chemical outputs that are chemically identical to fossil-fuel derivatives, passing strict food-contact safety thresholds.
The Textile Paradox: Overcoming the severe technical barriers of processing polyester garments embedded with complex dyes, elastane fractions, and multi-material hardware.
The Role of Non-Dilutive Capital: How to strategically leverage state and international innovation grants—like GR3N's €35 million EU Innovation Fund grant—as foundational tools to de-risk capital-intensive technology.
🌍 Why This Matters:
The world produces over 400 million tons of plastic waste annually, and the fashion industry accounts for millions of tons of discarded synthetic textiles that are structurally impossible to recycle with yesterday's tools. Simply asking consumers to sort better cannot solve a molecular problem. Dr. Maurizio Crippa is delivering the definitive physical solution. By designing an advanced thermodynamic execution platform that handles highly contaminated waste streams, GR3N prevents high-value carbon molecules from being incinerated or buried.
👤 Expert Background:
Founder & Chief Scientific Officer of GR3N, a pioneering deep-tech chemical engineering firm scaling advanced depolymerization solutions globally.
PhD in Materials Science & Academic Researcher, specializing in organic, inorganic, and polymer chemistry prior to transitioning into deep-tech entrepreneurship.
Co-Founder & Former Vice President of Chemical Recycling Europe, actively shaping global circular economy policies and regulatory frameworks from 2020 to 2024.
Co-Chairman of the Textile Working Group at Petcore Europe, directing international standards for polyester and PET value-chain circularity.
🎙️ Hosted by Gary Fowler, CEO of GSD Venture Studios — global AI entrepreneur, investor, and innovation leader spotlighting founders navigating the realities of building in the AI era.
💡 Perfect For:
Sustainability venture capital partners, chemical engineering executives, supply chain sustainability directors, packaging designers, and deep-tech founders navigating the realities of capital-intensive industrial asset deployment.
🚀 Timely Topic:
As international environmental laws tighten and multinational consumer brands scramble to meet mandatory recycled-content deadlines, standard waste collection systems are hitting their limit.