H2Mare - H2Wind

Self-sufficient Offshore H2 Electrolyis

Duration: 01.04.2021 - 31.03.2025

Abstract

Development of the foundations for the world's first direct offshore hydrogen production, foundations for electrolysis technology for offshore operation, the possibilities for storing and transporting hydrogen on land, as well as the optimal coordination of the subsystems to increase the efficiency of the overall system

 

Research Topics IMWS

Optimization of cell and stack development at the microstructural level and aging phenomena under offshore conditions as well as the development of a research stack to derive the electrolyser behaviour at industrial stack size including operando analytics

 

Focus

Optimization of cell and stack development at the microstructural level and aging phenomena under offshore conditions as well as the development of a research stack to derive the electrolyser behaviour at industrial stack size including operando analyticsn

 

Methods

SEM, TEM, EDX, CT, XRD, XPS, ToF-SIMS, IR spectroscopy, magnetic field measurement, lock-in thermography, LIBS

 

Partners

Siemens Gamesa, Siemens Energy, RWE, Reuther, fumatech, Salzgitter Mannesmann Forschung, Fraunhofer IMWS, IWES, IWM, IWU, ICT, IGB; DECHEMA, KIT IMVT, etc.

 

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