4D Hydrogen Project logo

CALL ID: EU2030-19-16
DURATION: 2023-2026
NUMBER OF PARTNERS: 7
TOTAL BUDGET: 2,2 mEUR

Map of the Europe with countries partners in 4D Hydrogen project

Green Ammonia Production with 4D (Decentralization, Decarbonization, Derivation and Digitalization) Hydrogen

The increasing harmful emissions have finally created an almost inevitable natural deterioration. It is obvious that transition into a green energy ecosystem is necessary in order to stop the natural devastation. Green hydrogen will be a critical enabler for the global transition to sustainable energy and net zero emissions. Also, as a hydrogen carrier, ammonia will play a significant role in the new hydrogen ecosystem. Currently, ammonia production causes almost 11% of global industrial carbon dioxide emissions, and 1.8% of global emissions. Producing green ammonia is likely to be put in perspective as it is chosen as one of the most innovative and emerging technology trends in 2021 by World Economic Forum. Therefore, green ammonia production from green hydrogen is vital for sustainability of our world.

Hence, we have formulated our strategy in order to develop green hydrogen, which is produced by electrolysis using green electricity produced from sun. In this project, a pilot scale green ammonia production site will be established and also a simulation of this site will be generated. In order to increase the innovative eligibility of this 4D Hydrogen project, a Smart Controlling Platform that will congregate all the data from the site will be developed. Carbon trace will be calculated as well.

TMBK PARTNERS’ role in the project

TMBK Partners Sp. z o.o. will lead the task dedicated to the simulation. Components related to chemical operations (Haber-Bosh process), physical operations such as compression, expansion or adsorption / desorption processes in the PSA system will be simulated in CHEMCAD and the data from the simulation will be used to create energy models of these systems in MATLAB.

Moreover, TMBK Partners Sp. z o.o. will be engaged in the technology transfer. After the completion of the project, and during its performance, we intend to expand our technology offer to include services for the renewable energy sector. The project will enable us to develop an internal research and development team for the energy industry. Design and simulation tools dedicated to energy conversion and storage systems will be used to design new distributed energy installations.