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Fluid Transport Properties from 3D Tomographic Images of Electrospun Carbon Electrodes for Flow Batteries

机译:来自电池电气碳电极的3D断层图像的流体运输特性

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Three-dimensional x-ray computer tomography images were obtained of electrospun poly(acrylonitrile) electrodes for a flow battery. The materials were imaged before and after carbonization. Information about the internal morphology; local fiber size and porosity, was analyzed and provided key insights into both the electrospinning and carbonizing processes. It was found that traditional imaging techniques may not be suitable for materials generated through electrospinning as it is a highly dynamic process. The fiber size tended to vary throughout the process while the porosity was relatively constant. Viscous flow was modelled through the material using the Lattice Boltzmann Method and the 3D flow fields that resulted provided further information about the role of heterogenous features on the performance of an electrospun electrode in a flow battery. The local porosity of the material had the largest effect on the material's flow dynamics.
机译:用于流动电池的电纺聚(丙烯腈)电极获得三维X射线计算机断层扫描图像。碳化前后成像材料。有关内部形态学的信息;分析了局部纤维尺寸和孔隙率,并为静电纺丝和碳化过程提供了关键洞察。发现传统的成像技术可能不适用于通过静电纺丝产生的材料,因为它是高动态的过程。纤维尺寸倾向于在整个过程中变化,而孔隙率相对恒定。使用晶格Boltzmann方法和3D流场通过材料和3D流场建模的粘性流程提供了关于异构特征在流电池中的电极的性能上的作用的进一步信息。该材料的局部孔隙率对材料的流动动态产生了最大的影响。

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