Pl. Politechniki 1
Warsaw, 00-661
Poland
Warsaw University of Technology
Molten Carbonate Fuel Cell, Molten Carbonate Electrolysis, CO2 Capture, electrolyte-matrix optimization, stack testing, dual-conductive electrolytes
Heat recovery, Supercritical CO2, Brayton cycle, Modelling
heat recovery, supercritical CO2, Brayton cycle, modelling, off-design, characteristics
Power-to-Gas, techno-economic assessment, Solid Oxide Electrolysis, Hydrogen, syngas, feasibility study
MCFC, Cathode, performance, pore size, nickel foam, Efficiency
MCFC, cathode, Performance, pore size, nickel foam, efficiency
Solid oxide fuel cell, SOFC-GT-SG hybrid system, techno-economic assessment, Green hydrogen, Levelized cost of energy, Hybrid power systems
fuel cells, Molten carbonate fuel cells, Electric resistance, contact resistance
molten carbonate fuel cell (MCFC), solid electrolyte support matrix, electrolyte materials science, high-temperature fuel cells, energy conversion efficiency
Electrolysis, solid oxide fuel cell, solid oxide electrolysis, power-to-gas
fuel cells, Electrolytes, Mathematical Modeling, boron, Medium temperature, Performance prediction