The global cement supply chain is under significant pressure to secure new sources of supplementary cementitious materials (SCMs) as traditional supplies dwindle. Carbon Upcycling unlocks the next-generation of SCMs from alternative materials, providing scalable, local solutions that enhance supply chain stability, strengthen margins, and reduce emissions.
We have engineered our CUT CO₂ System to solve the supply challenges facing today’s cement industry. The system converts locally sourced industrial byproducts into clean, high-quality cementitious materials, enabling manufacturers to strengthen their supply chains and differentiate their blends with unique performance and environmental benefits.
Designed for seamless integration into existing plant infrastructure, this scalable, bolt-on technology allows manufacturers to localize SCM production and reduce long-term risk.
Enhances the use of locally sourced steel slag, clay, and legacy coal ash to reduce clinker content by up to 50%.
Tapping into local underutilized feedstocks enables the predictable production of cementitious materials.
Our low-carbon cementitious materials unlock unique performance and environmental characteristics, enriching the final product.
Carbon Upcycling will deploy its flagship commercial-scale CUT CO₂ System at the Ash Grove Mississauga Cement Plant in Ontario, Canada. The system will enable the production of high-quality cementitious material derived from locally sourced steel slag, while sequestering CO₂ emissions captured from the plant’s kiln flue gas stack.
Over the next decade, we will continue to demonstrate our technology’s versatility, scalability, and operational excellence to ensure we can build a resilient, clean tomorrow.
By integrating our CUT CO₂ System, manufacturers can advance their Environmental, Social, and Governance (ESG) objectives while generating environmental attributes for participation in the voluntary carbon market, compliance markets, or book-and-claim systems.