Degradation modeling in solid oxide electrolysis systems: A comparative analysis of operation modes
Author:
Funder
European Regional Development Fund
Publisher
Elsevier BV
Reference115 articles.
1. State-of-the-art sustainable approaches for deeper decarbonization in Europe – An endowment to climate neutral vision;Madurai Elavarasan;Renew Sustain Energy Rev,2022
2. How to meet EU GHG emission reduction targets? A model based decarbonization pathway for Europe’s electricity supply system until 2050;Pleßmann;Energ Strat Rev,2017
3. Hydrogen and the decarbonization of the energy system in europe in 2050: A detailed model-based analysis;Seck;Renew Sustain Energy Rev,2022
4. Green hydrogen as a power plant fuel: What is energy efficiency from production to utilization?;Pashchenko;Renew Energy,2024
5. Electrochemical Cells for Novel Routes to Ammonia;Hendriksen;ECS Trans,2023
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