CleanInnoGen develops two hydrogen production technologies: the Copper-Chlorine Cycle, which efficiently generates hydrogen from high-temperature heat sources, and a molten metal process that extracts hydrogen from sour gas. These methods provide scalable solutions to produce affordable green hydrogen, addressing the energy-intensive emissions in heavy industries and the natural gas sector.
Funding
Funding not disclosed
Founders
Product
Problem
Many industries and the natural gas sector face challenges in reducing carbon emissions due to the high energy demands of hydrogen production and the environmental impact of sour gas processing. Traditional hydrogen production methods often lack the scalability and affordability needed for widespread adoption.
Solution
CleanInnoGen develops advanced hydrogen production technologies designed to address these challenges. Their Copper-Chlorine Cycle efficiently generates hydrogen from high-temperature heat sources, including nuclear energy and small modular reactors, enabling decarbonization in heavy industries like steel and cement. Additionally, their molten metal process extracts hydrogen from sour gas, providing a sustainable solution for the natural gas sector by enhancing hydrogen production efficiency and reducing the carbon footprint associated with existing fossil fuel infrastructures. These technologies aim to make hydrogen production more efficient, affordable, and accessible, paving the way for its widespread adoption.
Target Audience
CleanInnoGen's primary customers are heavy industries (steel, cement), the natural gas sector, and entities utilizing high-temperature heat sources seeking to decarbonize their operations through efficient and sustainable hydrogen production.
Features
- Copper-Chlorine Cycle: A thermochemical process for hydrogen production from high-temperature heat sources.
- Molten Metal Process: Extracts hydrogen from sour gas reserves.
- Decarbonization: Reduces emissions in heavy industries and the natural gas sector.
- Scalability: Technologies designed for scalable hydrogen production.