♻ California-Based Circular Economy Company

Advanced Waste
Recycling

Transforming Plant Biomass, Hazardous Fuels, & Paper Waste
Into High-Value Raw Materials

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95-100% Waste Diversion Rate
100% Waste Streams Processed
0 Landfill Dependency
100% Circular Economy Focused

RenewX Carbon is a California based circular economy company dedicated to transforming society's most challenging waste streams into high value raw materials and sustainable products. Using advanced thermochemical technologies, including next generation pyrolysis and material recovery systems, we convert woody biomass, hazardous fuels, urban wood waste and papers into valuable raw materials and products.

Our mission is simple: eliminate waste, reduce emissions, and build a regenerative materials economy that strengthens communities and protects the environment.

By integrating zero waste design, zero emission processing, and science driven resource recovery, RenewX Carbon provides scalable solutions for wildfire risk, landfill bound plastics and rubber, and end of life composite materials. We partner with cities, counties, industries, tribal communities, and state agencies to create sustainable and environmentally friendly waste management system, create local jobs, and return valuable materials back into the supply chain.

Our advanced recycling technology doesn't just process waste, it transforms it. We deliver intelligent recycling for a zero-waste reality. Through precision sorting, innovative processing, and strategic upcycling, every pound of waste we touch is reborn—not as cheap fill, but as a premium solution for California's most demanding environments and climates, and beyond.

Renewxcarbon RXC circular economy globe

What We Transform & How

Lignocellulosic Biomass Conversion

We convert forest residues and agricultural waste into high‑value carbon materials instead of becoming wildfire fuel or landfill burden. Our systems help counties and cities turn unmanaged waste into clean energy, biochar, and renewable raw materials that strengthen local circular‑economy infrastructure. Forest residues and agricultural waste are transformed through precision pyrolysis and advanced condensation and emissions‑control technologies into biochar, water‑based distillates, and bio‑oils, providing renewable alternatives to fossil‑derived feedstocks.

Pyrolysis · Biochar · Distillates

Hazardous Fuels

Hazardous fuels such as dead trees, slash piles, and overgrown vegetation, are the primary driver of catastrophic wildfires. We provide counties and CAL FIRE with rapid‑deployment thermochemical solutions and extractions that convert these dangerous fuels into safe, marketable raw materials, reducing fire risk while generating economic value from material that would otherwise threaten communities. Hazardous and hard-to-handle fuel streams are safely converted through controlled thermochemical processing into cleaner, high-value raw materials—reducing risk, emissions, and landfill dependency.

Hazardous Fuel Conversion

Urban Wood Waste

Urban wood waste from construction, sawmill, municipal tree maintenance, and landscaping waste from tree trimming, felling, stump grinding, and grasses often overwhelms city landfills. Our technology enables municipalities to divert this waste from landfills and convert them into high‑value carbon materials, reducing landfill pressure, and creating solutions from what was once an expensive waste problem.

Urban Wood Upcycling

Cardboard and Papers

Cardboard and paper waste can be upgraded into valuable carbon rich raw materials instead of occupying landfill space. Our process helps cities and counties transform everyday recyclables into industrial grade inputs, supporting sustainability goals while cutting landfill use and waste management expenses. Cardboard, paper and fiber waste streams are recovered, converted, and upgraded into useful and valuable carbon rich intermediate materials, keeping paper out of landfills and returning value to the circular supply chain.

Fiber Recovery · Cardboard Upcycling

Tires and Rubber

End-of-life tires and rubber waste are among the most persistent landfill problems—bulky, non-biodegradable, and rich in recoverable carbon. Our thermochemical conversion systems upcycle tires and rubber into high-value carbon materials, oils, and industrial feedstocks, diverting them from illegal dumping and landfills while returning valuable resources to the circular supply chain.

Tire Upcycling · Rubber Recovery

From Waste to Value in 5 Steps

01

Collection

Waste streams are collected, sorted & characterized

02

Pre-Treatment

Shredding, drying & feedstock preparation

03

Conversion

Extraction & Pyrolysis

04

Post-Treatment

Outputs are filtered and purified into market-ready materials

05

Distribution

Raw materials supplied back to industry & manufacturers

Built on Strategic Alliances

We collaborate with Counties, government bodies, and research institutions, to scale waste solutions in California.

Counties

Access to raw materials and operations

Research Institutions

Joint R&D on conversion technologies

Government Agencies

Policy alignment & regulatory support

Impact Investors

Scaling sustainable infrastructure

RenewXCarbon Zero Emission Technology Facility — Turning Waste Into Clean Energy

⚡ Future Technology and Operation

Turning Waste Into Clean Energy

Industrial scale production plant

Our thermochemical reactors operate at the frontier of waste upcycling. The technology promises a future in which tires, rubber, and plastics waste stream are no longer an environmental burden, but a cornerstone of a sustainable, circular economy and source of clean energy. We sit at the intersection of waste management, industrial chemistry, chemical engineering, and circular‑economy innovation.

Research & Development

Our Research and Development team is accelerating a science-driven innovation program focused on reducing wildfire risk, strengthening community resilience, and restoring damaged landscapes. Through integrated material science, ecological engineering, and applied field research, we are developing next-generation solutions across three critical domains.

Wildfire Prevention

Reducing fuel loads through circular biomass utilization.

Wildfire Resistance

Developing protective materials for high-risk environments.

Post-Wildfire Treatment

Restoring burn scars and rebuilding resilient landscapes after fire.

Our research mission is clear: to transform waste into protective systems, strengthen resistance before fire strikes, and accelerate recovery after fire impacts.

Wildfire Prevention Slurry

Forest Resilience

Biochar-enhanced slurry applied to high-risk wildland interfaces to dramatically increase ignition resistance and slow fire spread before fire season peaks.

Fire-Resistance Mulch

Defensible Space

Engineered carbon mulch for landscaping in wildfire-prone zones — non-combustible ground cover that protects structures while enriching soil health.

Post Wildfire Treatment

Landscape Restoration
  • a) Soil Stabilization — biochar matrix binds ash and topsoil to prevent loss
  • b) Erosion Prevention — reduces runoff and sediment transport after burn scars
  • c) Ground Cover with Long-Term Soil Restoration — rebuilds microbiome, retains moisture, and accelerates native revegetation

Let's Build a Cleaner Future Together

Whether you're a waste generator, industry partner, or investor — we want to hear from you. Our team is ready to explore how thermochemical conversion can work for your needs.

Location California
Email info@renewxcarbon.com
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