Sustainable Commodity and Specialty Chemicals - X3
X3 will discover and develop sustainable processes and novel materials to produce valuable chemicals in an efficient, safe, and decentralised way. These processes will be based on electrochemical reactions powered by renewable electricity and use abundant reactants and highly efficient catalyst materials.
Currently, most chemicals are produced by thermal catalysis, powered by fossil fuels. Our decarbonised future requires sustainable processes and materials to produce renewable chemicals. X3 will address this challenge using novel electrochemical solutions for the transition towards the sustainable synthesis of valuable chemicals.
This is vital to decarbonise and revolutionise the chemical industry. The Power-to-X technologies and processes developed in X3 will allow us to produce renewable chemicals at ambient conditions in a decentralised way. We aim to include chemicals such as fertilisers, medicines, paints, plastics, solvents, and other materials.
The catalysis of electrochemical reactions, i.e. electrocatalysis is essential to produce sustainable chemicals. X3 aims to make a breakthrough in the discovery of new electrochemical processes and selective electrocatalyst materials that are key to achieve the synthesis of renewable chemicals.
This is vital to decarbonise and revolutionise the chemical industry. The Power-to-X technologies and processes developed in X3 will allow us to produce renewable chemicals at ambient conditions in a decentralised way. We aim to include chemicals such as fertilisers, medicines, paints, plastics, solvents, and other materials.
The catalysis of electrochemical reactions, i.e. electrocatalysis is essential to produce sustainable chemicals. X3 aims to make a breakthrough in the discovery of new electrochemical processes and selective electrocatalyst materials that are key to achieve the synthesis of renewable chemicals.