Biochar Breakthrough in Soil Carbon Sequestration
Field trials show 30-year carbon lock-in potential in agricultural soils, opening new pathways for carbon credits and regenerative farming.
Read More →Carbon Capture & Utilisation at industrial scale. We transform CO₂ emissions into high-value biocomposites, biochar, fertilisers, and construction materials that drive circular economy solutions.
A world where industrial emissions become feedstock for sustainable products, decoupling economic growth from environmental harm.
Scale carbon capture & utilisation technology to transform gigatonnes of CO₂ into materials that support circular industrial systems.
Partner with industrial partners, leverage cutting-edge science, and deliver economic returns while reducing atmospheric carbon.
Lightweight, durable composites derived from CO₂-utilisation pathways for automotive, aerospace, and consumer goods.
Activated carbon materials for soil remediation, carbon sequestration, and agricultural productivity enhancement.
Next-generation fertilisers enriched with carbon compounds that boost crop yields while building soil carbon.
Carbon-neutral cement additives and construction composites that reduce embodied carbon in buildings by 40-60%.
Intelligent drying systems optimised by machine learning to reduce energy consumption in biofuel production pipelines.
Direct air capture and point-source emissions technology, engineered for scale and cost-efficiency in industrial settings.
Every tonne of CO₂ captured represents an opportunity: a material that can be engineered, manufactured, and sold. CCM partners with industrial emitters to convert their carbon liability into competitive advantage through circular material science.
Get StartedCO₂ is captured from industrial sources or direct air using modular, engineered systems tuned to each site's conditions.
Captured CO₂ is processed through proprietary chemical pathways to create precursor feedstocks for material synthesis.
Feedstocks are engineered into biocomposites, biochar, fertilisers, and construction materials at scale using proven manufacturing methods.
Products enter supply chains for automotive, agriculture, construction, and energy sectors, closing the carbon loop.
Horizon Europe funding, Innovate UK grants, and German innovation incentives support R&D and pilot deployment at scale.
Collaborations with leading universities and research institutes in materials science, chemistry, and circular economy engineering.
Strategic capital from impact investors, venture firms, and corporate partners aligned on climate and circular economy transformation.
CCM was founded on a simple principle: carbon capture and utilisation must be economically viable to scale. We've assembled a team of materials engineers, chemists, and business leaders who understand both the science and the market.
Our work spans three continents, with active projects in Germany, the UK, and beyond. We partner directly with industrial emitters, research institutions, and material manufacturers to build supply chains that transform CO₂ from liability to asset.
The transition to a circular carbon economy isn't an option—it's inevitable. CCM is building the technology and partnerships that will define that future.
Field trials show 30-year carbon lock-in potential in agricultural soils, opening new pathways for carbon credits and regenerative farming.
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Machine learning optimisation deployed in biofuel production reduces operational costs while improving product consistency and reducing waste.
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Modular capture unit now processing 100 tonnes of CO₂ daily, with plans to scale across European industrial clusters by 2027.
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