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Docket #: S23-551

Lignin biopolymer-bound soil composite (BSC): a sustainable, recyclable, carbon-negative, construction material

Stanford University's Lepech Research Group has developed a sustainable, recyclable, carbon-negative construction material that binds soil with lignin, a natural biopolymer, instead of Portland cement. Biopolymer-bound soil composites (BSC) are formed by mixing soil aggregate, biopolymer, and solvent, then desiccating the mixture into a solid structural component. Lignin, a hydrophobic biopolymer abundant in regions with high cement demand, provides enhanced moisture resistance. Compared to Portland cement, lignin BSC requires less energy and heat, uses low-cost feedstocks, and unlike concrete, is explicitly recyclable.

Stage of Development – Prototype
The Lepech Research Group have produced standard clay-fired size bricks that meet strength requirements for non-structural construction applications as defined by ASTM.

Applications

  • Non-structural building materials and modular construction components:
    • Pavements and pavers
    • Roofing tiles
    • Non-load-bearing walls/elements
    • General soil improvement/stabilization
    • Potential extraterrestrial construction (regolith-based aggregate use)

Advantages

  • Near-negative carbon footprint
  • Low-cost waste stream feedstock - utilizes waste material rather than mined/processed raw materials
  • Lower processing temperatures and lower energy use
  • Built-in end-of-life recyclability
  • Enhanced moisture resistance

Publications

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