Biobased wood composite foam for sustainable packaging and insulation applications

Technology
In development
Company

Plantee Bioplastics offers a high wood content (70-80 wt.%) biobased foam produced through a proprietary suspension process. This compostable, thermally stable foam provides a low-cost alternative to polystyrene foams for construction insulation, food packaging, and single-use cups and plates.

Overview

Plantee Bioplastics has developed a novel biobased foam using a patent-pending suspension process that achieves 70-80 wt.% wood content, significantly higher than foams produced by traditional extrusion methods. The whole wood serves as the matrix, combined with small amounts of bioderived saponins and water recycled in a closed-loop system. This approach yields a foam that is biobased, compostable, and thermally stable up to 85°C, while maintaining a substantially lower cost than conventional polystyrene (PS) foams as confirmed by life cycle analysis.

The foam can be tailored in cell size and density by adjusting the type of gas used and saponin formulation, enabling customization for diverse industries including construction, food and beverage packaging, and consumer goods. The closed-cell foam structure provides excellent cell stability, allowing it to be transformed into finished products using conventional polymer processing techniques such as vacuum forming, profile extrusion, or in-cavity foam molding.

Technical specifications
  • High wood loading: 70-80 wt.% wood content derived from Canadian forest residues, maximizing use of renewable, low-value biomass.
  • Suspension process: Patent-pending manufacturing method that produces higher cell density and more uniform foam structure compared to traditional extrusion foaming.
  • Bioderived surfactants: Small amounts of saponins act as foaming agents, replacing synthetic chemical additives.
  • Closed-loop water system: Water used in the suspension process is recycled, minimizing waste and resource consumption.
  • Tunable cell morphology: Cell size and density can be adjusted by varying gas type and saponin formulation to meet application-specific requirements.
  • Thermal stability: Maintains structural integrity at temperatures up to 85°C.
  • Processing compatibility: Can be finished using vacuum forming, profile extrusion, or in-cavity foam processes with standard polymer processing equipment.
  • End-of-life advantages: Biobased composition supports compostability, offering a sustainable alternative to fossil-fuel-based PS foams.
Technology readiness level

The foam technology has been validated through laboratory-scale production and characterization using wood sourced from Canadian forest residues. Life cycle analysis has confirmed a considerably lower cost compared to conventional PS foams. The next stage of development involves creating prototype single-use cups and plates to test performance across various environments and customer use cases. This prototype phase is expected to take approximately six months and will validate the foam's suitability for compostable, thermally stable, and low-cost packaging applications. Further work is needed to expand the technology into additional single-use food service products and construction insulation applications.


About Plantee Bioplastics Inc.

Plantee Bioplastics Inc. is a Canadian-based company that develops innovative, bio-based material solutions designed to support a circular economy. The company specializes in creating sustainable alternatives to traditional plastics, such as their BioSwitch technology, a biodegradable plastic designed for the marine industry that mimics the adaptability of living organisms to prevent the formation of ghost fishing gear. Additionally, they have developed ForestFoam, a thermal construction insulation made from low-value forest residues. These solutions are crafted to be 100% biodegradable or recyclable, utilizing renewable, bio-based materials to replace fossil-fuel inputs while maintaining the durability and performance characteristics required for commercial and industrial applications.

These material innovations are aimed at industries seeking to reduce their environmental impact and comply with sustainability mandates. By focusing on renewable resources, such as wood fibers for insulation and biodegradable polymers for marine use, Plantee provides products that offer competitive performance while minimizing plastic waste and carbon output. The company’s efforts include research and development engagements, such as those through Canada’s Innovative Solutions Canada program, to test and commercialize their sustainable materials. Through these initiatives, they support the transition toward a circular bioeconomy, providing builders, contractors, and marine operators with eco-friendly alternatives that align with evolving environmental regulations and building codes.

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