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Degradation of Metal-supported SOFC and One Powerful Investigation Method: Multi-scale Modeling and Simulation

机译:金属支持的SOFC的降解和一种强大的研究方法:多尺度建模和仿真

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Metal-supported solid oxide fuel cell (SOFC) has a varieties of potential advantages compared to the traditional ceramic supported SOFC. However, degradation issue of metal-supported SOFC is seriously impeding its further development, in particular, the inter-diffusion and interaction of iron, chromium and nickel at substrate/anode interface is known to be a key issue responsible for cell rapid degradation. With respect to the complexity and nonlinearity of degradation mechanism, multi-scale modeling and simulation is regarded as one powerful method to gain a deep insight on degradation mechanism. In present work, multi-scale models were presented to investigate multi-scale physicochemical phenomena happening at interface of anode/substrate, with the attempt to reveal degradation mechanism. The research procedure for the above goal was addressed in detail as well.
机译:与传统陶瓷支持的SOFC相比,金属支撑的固体氧化物燃料电池(SOFC)具有潜在的优点。然而,金属支持的SOFC的降解问题严重地阻碍了其进一步的发展,特别是铁,铬和镍在衬底/阳极界面的间断和相互作用中,已知是负责细胞快速降解的关键问题。关于降解机理的复杂性和非线性,多尺度建模和模拟被认为是一种强大的降解机制深入了解的一种强大的方法。在目前的工作中,提出了多尺度模型,以研究在阳极/基板界面处发生的多尺度物理化学现象,并试图揭示降解机制。上述目标的研究程序也详细介绍。

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