Skip to main content

CO2 Conversion

The CO2 Tree: The Potential for Carbon Dioxide Utilization Pathways (Poster)

Among the most active areas of chemistry research today is that of carbon dioxide utilization: an area of research that was viewed as futile and commercially impractical not so long ago due to the energetic stability of the CO2 molecule. The breakthroughs that largely began in earnest in the 1990s have accelerated and now make up a diverse and plentiful portfolio of technological and scientific advances and commercialized technologies.

The CO2 Tree: The Potential for Carbon Dioxide Utilization Pathways

Among the most active areas of chemistry research today is that of carbon dioxide utilization: an area of research that was viewed as futile and commercially impractical not so long ago due to the energetic stability of the CO2 molecule. The breakthroughs that largely began in earnest in the 1990s have accelerated and now make up a diverse and plentiful portfolio of technological and scientific advances and commercialized technologies.

eFuels From Waste CO2 and Hydrogen

Infinium produces electrofuels (eFuels) to help the heavy transit and chemicals sectors achieve net zero by reducing CO2 emissions. Infinium eFuels are made from green hydrogen derived from renewable power and captured carbon dioxide in a proprietary process developed and commercialized over a decade. Infinium’s unique production process facilitates the on-site production of ultra-low carbon transportation fuels and chemicals such as sustainable aviation fuels (eSAF), eDiesel, and eNaphtha.

Environmentally Responsible Nanoparticles for Catalysis

NanoScientifica Scandinavia is a startup specializing in nanotechnology solutions with applications in biotechnology, medicine, and catalysis. The company focuses on producing shape- and size-controlled nanoparticles through scalable and environmentally responsible processes designed to reduce energy consumption, waste, and byproducts, promoting more sustainable industrial practices. By optimizing the size, shape, and composition of nanoparticles, NanoScientifica enhances their catalytic activity for various chemical processes.