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Multi Length-Scale Quantification of Hierarchical Microstructure in Designed Microtubular SOFC Electrodes

机译:设计的微管SOFC电极中的分层微观结构的多长度尺度量化。

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The transport properties of a micro-tubular solid oxide fuel cell (MT-SOFC) anode have been analysed by imaging and simulation at multiple length-scales. The anode support investigated was manufactured using a phase inversion-assisted co-extrusion process, which generated a hierarchical and highly anisotropic microstructure. The resulting pore network was observed to contain two distinct, but interacting transport systems. The features in these systems spanned several orders of magnitude and as such it was not possible to image or model them simultaneously. The simulations indicated that the design of the microstructure was beneficial for the radial transport required by these cells; however this conclusion was only obtained by considering diffusive systems at many length-scales.
机译:通过成像和模拟在多个长度尺度上分析了微管固体氧化物燃料电池(MT-SOFC)阳极的传输特性。使用相转化辅助共挤出工艺制造了所研究的阳极载体,该工艺产生了分层且高度各向异性的微观结构。观察到所形成的孔网络包含两个截然不同但相互作用的传输系统。这些系统中的功能跨越了几个数量级,因此无法同时对其进行成像或建模。模拟表明,微结构的设计有利于这些细胞所需的径向转运。然而,这个结论只能通过考虑许多长度尺度上的扩散系统来获得。

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