Bio-Composites: The Next-G of Materials
About bio-composites and it applications
10/3/20262 min read


We can replacing petroleum plastics and high-carbon concrete with agricultural waste and liquid glass. Our biogenic sodium silicate bio-composites deliver the structural integrity whatever your industry demands, with the fire ratings your compliance requires, at zero cost to the planet. The following just some of those examples.
Utilization by Sector
1. Building Materials (Construction & Architecture)
Cement, gypsum, and synthetic insulation are carbon-intensive, and traditional bio-based materials (like straw or raw hemp) carry immense fire and mold risks.
Our biogenic silicate blocks and panels introduce a new era of structural bio-materials. By mineralizing agricultural fibers with liquid glass derived from rice husks, we offer a 100% bio-based, carbon-negative building element that carries a built-in Class A fire rating without a single toxic chemical additive.
2. Automotive
EV manufacturers are desperate to reduce vehicle weight to extend battery range, but traditional carbon fiber and plastics damage their "green" branding and hamper vehicle recyclability.
We are light-weighting the next generation of transport. Our hemp-silicate door trims, parcel shelves, and chassis panels offer an incredible strength-to-weight ratio, drastically slashing vehicle mass.
3. Technology & Consumer Electronics
Electronic waste is a global crisis. Brands are searching for circular materials for device housings that can handle high operating temperatures without warping or off-gassing.
Ditch the plastic casing. Our technical bio-composites provide high dimensional stability and exceptional thermal shielding for laptops, phones, and server housing.
4. Aviation & Aerospace
Aerospace cabin interiors are subject to the strictest Smoke, Fire, and Toxicity (FST) regulations globally. Standard natural fibers fail these tests instantly.
We have solved the bio-material crisis for aerospace. Because our binder is inorganic biogenic silica, our cabin sidewalls and cargo liners comfortably meet rigid FST aviation standards.
5. Marine
Marine environments destroy natural fibers through rot, mold, and salt-water degradation, while fiberglass structures slowly shed microplastics into the ocean.
A circular hull and cabin material built for the open water. The sodium silicate matrix provides a natural, non-toxic biocide defense that permanently wards off rot, mold, and marine borers without polluting the water.
6. Medical & Rehabilitation
Modern orthopedic splints, prosthetic sockets, and mobility aid frames are heavy, trap sweat, and can cause skin irritation over long periods.
Patient comfort meets structural rigidity. Our medical-grade bio-composites create ultra-lightweight, biocompatible orthotic braces and prosthetic structures.
We utilize abundant agricultural waste streams. As carbon taxes rise and petroleum costs fluctuate, our supply chain remains localized, stable, and highly cost-competitive.
BioCom Indonesia
Industrial sustainability engineering & closed-loop infrastructure.
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