Gigaton

Gigaton is developing a leading edge artificial intelligence platform which uses deep reinforcement machine learning to address complex process optimisation challenges within the foundation industries. Gigaton will enable process plants to radically reduce carbon emissions and operational costs.

News stories

Carbon Re and Materials Processing Institute join forces for ground-breaking use of Artificial Intelligence to decarbonise steel

The steel industry is one of the most significant contributors to greenhouse gas emissions globally, accounting for 8% of global emissions, and is facing tremendous pressure from high energy prices and growing carbon taxes. Carbon Re, an AI and climate tech start-up spun out of UCL, and the University of Cambridge, is partnering with the … Carbon Re and Materials Processing Institute join forces for ground-breaking use of Artificial Intelligence to decarbonise steel

Carbon Re raises £4.2m seed funding to tackle gigatonnes of emissions from the highly pollutive cement industry

Cambridge University and UCL joint spin-out to accelerate roll-out of AI-based industrial decarbonization technology Carbon Re, a climate tech company building state-of-the-art AI to decarbonize energy-intensive industries, has raised £4.2 million seed funding to scale up development and deployment of its novel technology. Their Delta Zero AI platform enables the highly pollutive cement industry to … Carbon Re raises £4.2m seed funding to tackle gigatonnes of emissions from the highly pollutive cement industry

New research highlights technologies that can cut 0.8 gigatonnes per year of CO2 emissions from cement production by 2030

New research by climate tech pioneer Carbon Re has found that the cement industry could deploy a combination of 13 existing technologies to reduce CO2 emissions by 0.8 gigatonnes per year. This is equivalent to the total annual greenhouse gas emissions of the United Kingdom and France, combined.  What’s more, the combination of just three … New research highlights technologies that can cut 0.8 gigatonnes per year of CO2 emissions from cement production by 2030