Which methane-fueled fuel cell is of superior performance in CCHP applications; solid oxide or molten carbonate?
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Reference46 articles.
1. Evaluation and optimization of a novel geothermal-driven hydrogen production system using an electrolyser fed by a two-stage organic Rankine cycle with different working fluids;Cao;J Storage Mater,2020
2. Desalinated water and hydrogen generation from seawater via a desalination unit and a low temperature electrolysis using a novel solar-based setup;Delpisheh;Int J Hydrog Energy,2021
3. Electrolyzer-fuel cell combination for grid peak load management in a geothermal power plant: power to hydrogen and hydrogen to power conversion;Alirahm;Int J Hydrog Energy,2021
4. Thermodynamic and exergo-economic analyses of a proton exchange membrane fuel cell (PEMFC) system and the feasibility evaluation of integrating with a proton exchange membrane electrolyzer (PEME);Chitsaz;Energy Convers Manage,2019
5. Fuel cell systems explained;Larminie,2003
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