Chemo-catalytic valorization of pectin production side streams into platform chemicals

Technology
In development
University

A biphasic acid/solvent reactor process that converts wet pectin manufacturing side streams into 5-(chloromethyl)furfural (CMF) and furfural without drying or biological catalysts. CMF and furfural are mainstream bio-based platform molecules used to produce green solvents, fuels, monomers, and commodity chemicals.

Overview

This technology offers a chemo-catalytic route for valorizing the wet, carbohydrate-rich side streams generated during pectin production. By processing the feed directly in a biphasic acid/solvent reactor, the platform yields 5-(chloromethyl)furfural (CMF) from hexoses and furfural from pentoses. Because the feed is already aqueous, no energy-intensive drying step is required. The approach is faster, cleaner, and cheaper than biotechnological alternatives, and it uses hydrogen ion as the only catalyst, eliminating fouling concerns.

CMF and furfural are established sustainable chemistry platform molecules with applications spanning industrial chemicals, fuels, monomers, agrochemicals, dyes, and detergents. CMF can also be hydrolyzed to produce HMF or levulinic acid, broadening the range of downstream products. A key near-term application is the synthesis of novel green solvents as regulatory pressure mounts against many conventional solvents due to toxicity and environmental concerns.

Technical specifications
  • Feedstock flexibility: Processes wet pectin side streams directly, eliminating drying requirements
  • Reaction system: Biphasic acid/solvent reactor using concentrated HCl with gaseous HCl adjustment for precise acid concentration
  • Catalyst: Hydrogen ion only, which is inherently resistant to fouling
  • Products: CMF (from hexoses) and furfural (from pentoses), both produced in high yields
  • Downstream flexibility: CMF can be hydrolyzed to HMF or, at higher temperatures, to levulinic acid
  • Process type: Chemo-catalytic rather than biotechnological, enabling faster reaction times and simpler operations
Technology readiness level

The underlying CMF production process is well established in the scientific literature and has been demonstrated at scale by multiple industrial developers. Current work focuses on adapting and optimizing the process specifically for pectin production side streams, with each feedstock requiring its own optimization pathway. Next steps include stakeholder consultation to define interests, bench-scale experimental validation, and engineering collaboration to scale the conversion of pectin waste into platform molecules. Joint development with industrial partners experienced in CMF processing is envisioned for scale-up and commercialization.


About University of California, Davis

UC Davis is a comprehensive public research university in Northern California, combining a land-grant heritage with an integrated academic health system and a veterinary teaching hospital. Industry engages through co-located clinical and translational facilities in Sacramento, a campus-adjacent research park, pilot-scale food and bioprocessing facilities, and a statewide extension network for field-to-market deployment. Proximity to the Bay Area and California's Central Valley enables rapid collaboration with startups and established enterprises, while corporate relations staff streamline access to faculty, talent, and core labs. Research is supported by competitive federal funding from agencies such as NIH, NSF, USDA, and DOE. A dedicated technology transfer office and venture support programs provide IP management, licensing, and startup formation pathways for industry partnerships.

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