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Applicability of the SOFC technology for coupling with biomass-gasifier systems: Short- and long-term experimental study on SOFC performance and degradation behaviour

机译:SOFC技术与生物质气化炉系统耦合的适用性:SOFC性能和降解行为的短期和长期实验研究

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摘要

Coupling biomass gasification with high temperature Solid Oxide Fuel Cells (SOFCs) is a promising solution to increase the share of renewables and reduce emissions. The quality of the producer gas used can, however, significantly impact the SOFC durability and reliability. The great challenge is to ensure undisturbed operation of such system and to find a trade-off between optimal SOFC operating temperature and system thermal integration, which may limit the overall efficiency. Thus, this study focuses on experimental investigation of commercial SOFC single cells of industrial size fueled with different representative producer gas compositions of industrial relevance at two relevant operating temperatures. The extensive experimental and numerical analyses performed showed that feeding SOFC with a producer gas from a downdraft gasifier, with hot gas cleaning, at an operating temperature of 750 degrees C represents the most favorable setting, considering system integration and the highest fuel utilization. Additionally, a 120 h long-term test was carried out, showing that a long-term operation is possible under stated operating conditions. Local degradation took place, which can be detected at an early stage using appropriate online-monitoring tools.
机译:将生物质气化与高温固体氧化物燃料电池(SOFC)耦合是增加可再生能源份额和减少排放的有前途的解决方案。但是,所使用的生产气的质量会严重影响SOFC的耐久性和可靠性。巨大的挑战是确保此类系统的正常运行,并在最佳SOFC工作温度和系统热集成之间找到折衷方案,这可能会限制整体效率。因此,本研究着重于在两个相关的工作温度下,对工业规模的商用SOFC单电池进行实验研究,这些单电池以不同的具有代表性的工业相关生产气体组成。进行的广泛实验和数值分析表明,考虑到系统集成和最高燃料利用率,在750℃的工作温度下,向SOFC输送来自下吹式气化炉的生产气,并进行热气净化,这是最有利的设置。此外,进行了120小时的长期测试,表明在规定的操作条件下可以进行长期操作。发生了局部退化,可以使用适当的在线监视工具在早期阶段进行检测。

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