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Progress in HEXIS' SOFC Development

机译:河内的SOFC发展进展

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摘要

HEXIS is developing and manufacturing SOFC-based micro-CHP systems for houses and / or small companies. For the past few years, a new generation (Leonardo) of the Viessmann/HEXIS SOFC system is being developed that is running both, in field and lab tests. Additionally, the development of the next system generation (da Vinci) was kicked off and first results on prototype level were achieved. This paper will report the latest results of short-stack tests and of system tests based on the new system combined with historical data of the earlier Galileo systems. These include tests running for more than 40'000 h. Moreover, results of the next system generation, reaching electrical efficiencies by steam-reforming with 50% AC, net and total efficiencies of 95% (LHV) will be shown. Finally, long-term and cyclic testing of systems in lab tests as well as results on robustness and performance in the field will be discussed: Degradation rates as low as approx. 0.3% / kh, i.e. 12 mΩ cm~2 / kh could be shown successfully on short-stack level over 40'000 h. These stacks have been analysed with electrochemical impedance spectroscopy (EIS) in regular intervals, which will enable valuable insights in understanding fundamental degradation mechanisms in long term operation of SOFC stacks. The paper will link these results with corresponding observations on full scale stack and button cells level.
机译:河内正在为房屋和/或小公司开发和制造基于SOFC的微型CHP系统。在过去几年中,正在开发出在现场和实验室测试中运行的viessmann / hexis sofc系统的新一代(Leonardo)。此外,下一个系统生成(Da Vinci)的开发被踢出,并且实现了原型水平的首先结果。本文将报告短堆栈测试和基于新系统的系统测试的最新结果与早期伽利略系统的历史数据相结合。这些包括运行超过40,000小时的测试。此外,将显示下一个系统生成的结果,通过蒸汽重整率达到电效率,呈现50%AC,净和总效率为95%(LHV)。最后,将讨论实验室测试中系统的长期和循环测试,以及该领域的鲁棒性和性能的结果:降低速率低至约。 0.3%/ kH,即12mΩcm〜2 / kH可以成功地显示在40,000小时内的短堆叠水平上。已经以经常间隔用电化学阻抗光谱(EIS)分析了这些堆叠,这将使在SOFC堆叠的长期运行中理解基本劣化机制的有价值的见解。本文将通过对全尺度堆栈和按钮单元级别的相应观测链接这些结果。

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