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Robust dynamic operation of high temperature electrolysis solid oxide cells
- Zhu, Zhikuan;
- Dzara, Michael J;
- Slomski, Heather;
- Van Winkle, Madeline;
- Hathaway, Oscar;
- Nagle-Cocco, Liam AV;
- Strange, Nicholas A;
- Gorman, Brian P;
- Shulda, Sarah;
- Tucker, Michael C
Published Web Location
https://doi.org/10.1016/j.jpowsour.2026.239770Abstract
This study evaluates the durability of Ni/YSZ-supported SOECs under dynamic operating conditions relevant to real-world applications. Systematic tests were conducted to assess cell performance under steam cycling (3 to 75% humidified H2), mode cycling between SOFC and SOEC operation, thermal cycling (150 to 750 °C at OCV, and 600 to 800 °C at 1.3V), and redox cycling (between 50% humidified H2 and 50% humidified N2). Steam cycling, mode cycling, and thermal cycling at OCV do not significantly accelerate performance degradation. Thermal cycling at 1.3V caused minimal damage within 600 to 800 °C. Full redox cycling (multi-hour oxidation holds) induced cell structural failure, while partial redox cycling (0.5 h holds) was tolerated. Extensive characterization revealed some material evolution, namely Sr and Co secondary phase formation, within the oxygen electrode due to La0.6Sr0.4Co0.2Fe0.8O3-δ instability, especially for steam cycling and mode cycling. Minimal changes were identified within the Ni-YSZ fuel electrodes. These findings provide critical insights into SOEC reliability under dynamic conditions, supporting their application in dynamic or intermittent energy systems.
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