Our patented carbon-negative concrete permanently mineralizes up to 1.4 tons of CO₂ per cubic meter, offering one of the highest carbon capture rates on the market. By integrating direct air capture (DAC) within the curing process, it qualifies for 45Q tax credits, creating both climate and financial value. This material exceeds ASTM perf
Our patented carbon-negative concrete permanently mineralizes up to 1.4 tons of CO₂ per cubic meter, offering one of the highest carbon capture rates on the market. By integrating direct air capture (DAC) within the curing process, it qualifies for 45Q tax credits, creating both climate and financial value. This material exceeds ASTM performance benchmarks and enables carbon-negative building at scale—ideal for cities, contractors, and developers seeking ESG-aligned innovation. Each ton poured turns a liability into an asset: reducing emissions and generating credits in one move.
Our polymer-asphalt surface offers more than durability—it unlocks real estate value. Designed to resist flooding and heat stress, this surface can reduce climate-related development risk while enabling up to 20% more buildable land in flood-prone regions. For AEC firms and real estate developers, this means millions in additional revenue
Our polymer-asphalt surface offers more than durability—it unlocks real estate value. Designed to resist flooding and heat stress, this surface can reduce climate-related development risk while enabling up to 20% more buildable land in flood-prone regions. For AEC firms and real estate developers, this means millions in additional revenue per acre. By replacing conventional asphalt with our product, clients gain a competitive edge through climate resilience, faster permitting, and long-term cost savings.
We are developing a carbon-negative fuel platform engineered for maximum lifecycle offset. While proprietary in design, our early results suggest this fuel will qualify for LCFS, 45Q, and IRA clean fuel credits, offering a compelling pathway to scalable decarbonization across logistics, aviation, and heavy industry.
We're also advancing wo
We are developing a carbon-negative fuel platform engineered for maximum lifecycle offset. While proprietary in design, our early results suggest this fuel will qualify for LCFS, 45Q, and IRA clean fuel credits, offering a compelling pathway to scalable decarbonization across logistics, aviation, and heavy industry.
We're also advancing work on quantum sensors for precision environmental and industrial monitoring—building toward Coltrane, our next-generation quantum processor. Coltrane is designed to exceed the coherence times of Google’s Willow and surpass the logical qubit scalability of Microsoft’s and IBM’s current systems. Its architecture is optimized for real-world deployment with a high-fidelity, 3D multi-hop resonator network and Bacon-Shor error correction—offering a path to usable quantum computing, not just academic demonstration.
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