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Accelerated testing of solid oxide fuel cell stacks for micro combined heat and power application

机译:固体氧化物燃料电池堆在微热电联产方面的加速测试

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State-of-the-art (SoA) solid oxide fuel cell (SOFC) stacks are tested using profiles relevant for use in micro combined heat and power (CHP) units. Such applications are characterised by dynamic load profiles. In order to shorten the needed testing time and to investigate potential acceleration of degradation, the profiles are executed faster than required for real applications. Operation with fast load cycling, both using hydrogen and methane/steam as fuels, does not accelerate degradation compared to constant operation, which demonstrates the maturity of SoA stacks and enables transferring knowledge from testing at constant conditions to dynamic operation. 7.5 times more cycles than required for 80,000 h lifetime as micro CHP are achieved on one-cell-stack level. The results also suggest that degradation mechanisms that proceed on a longer time-scale, such as creep, might have a more dominating effect for long life-times than regular short time changes of operation. In order to address lifetime testing it is suggested to build a testing program consisting of defined modules that represent different application profiles, such as one module at constant conditions, followed by modules at one set of dynamic conditions etc. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用与微型热电联产(CHP)单元相关的配置文件对最新(SoA)固体氧化物燃料电池(SOFC)电池组进行了测试。这种应用的特点是动态负载曲线。为了缩短所需的测试时间并调查潜在的降级加速,配置文件的执行速度比实际应用程序所需的速度更快。与恒定运行相比,使用氢气和甲烷/蒸汽作为燃料的快速负载循环运行不会加速降解,这证明了SoA电池组的成熟性,并使知识从恒定条件下的测试转移到动态运行。由于在单电池堆级别实现了微型热电联产,因此其寿命比80,000小时的寿命高出7.5倍。结果还表明,在较长的时间范围内进行降级的机制(例如蠕变),与正常的短时间操作变化相比,在较长的使用寿命内可能具有更主要的作用。为了应对寿命测试,建议构建一个测试程序,该程序由代表不同应用程序配置文件的已定义模块组成,例如,一个模块在恒定条件下,然后是在一组动态条件下的模块,等等。(C)2015 Elsevier BV All版权所有。

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