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Decarbonising energy-intensive industries with renewable synthetic fuels
DESIRE is an ambitious research initiative focused on unlocking the potential of e-fuels through a multidisciplinary approach that integrates experimental, theoretical, and numerical investigations. By addressing key challenges in chemical kinetics, combustion physics, and real-world applications, DESIRE aims to develop cutting-edge digital twin models for next-generation combustion systems.
Our research is structured into three scientific work packages:
WP1 – Chemical Kinetics Modeling
Developing accurate kinetic models for various e-fuels (NH₃, CH₃OH, H₂, DME, OMEx) to enhance predictive capabilities for combustion performance and emissions control.
WP2 – Physical Processes in Combustion
Investigating turbulence, heat transfer, and spray dynamics to refine combustion modeling across industrial applications.
WP3 – Applications and Feasibility
Assessing the real-world integration of e-fuels in power generation, industrial heating, and transportation, considering both technological and economic impacts.
About DESIREClimate change and energy security challenges demand a rapid transition from fossil-based energy production to sustainable alternatives. The European Green Deal and the REPowerEU Plan highlight the urgency of decarbonizing Energy-Inten...