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In situ compression and X-ray computed tomography of flow battery electrodes 被引量:1

In situ compression and X-ray computed tomography of flow battery electrodes
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摘要 Redox flow batteries offer a potential solution to an increase in renewable energy generation on the grid by offering long-term, large-scale storage and regulation of power. However, they are currently un- derutilised due to cost and performance issues, many of which are linked to the microstructure of the porous carbon electrodes used. Here, for the first time, we offer a detailed study of the in situ effects of compression on a commercially available carbon felt electrode. Visualisation of electrode structure us- ing X-ray computed tomography shows the non-linear way that these materials compress and various metrics are used to elucidate the changes in porosity, pore size distribution and tortuosity factor under compressions from 0%-90%. Redox flow batteries offer a potential solution to an increase in renewable energy generation on the grid by offering long-term, large-scale storage and regulation of power. However, they are currently un- derutilised due to cost and performance issues, many of which are linked to the microstructure of the porous carbon electrodes used. Here, for the first time, we offer a detailed study of the in situ effects of compression on a commercially available carbon felt electrode. Visualisation of electrode structure us- ing X-ray computed tomography shows the non-linear way that these materials compress and various metrics are used to elucidate the changes in porosity, pore size distribution and tortuosity factor under compressions from 0%-90%.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第5期1353-1361,共9页 能源化学(英文版)
基金 support from the EPSRC under grants EP/L014289/1 EP/N032888/1 and EP/M014045/1 the STFC Global Challenges Network in Batteries and Electrochemical Energy Devices under the grant ST/N002385/1 for facilitation of travel funding from the Royal Academy of Engineering
关键词 Redox flow battery X-ray computed tomography Compression Carbon felt RFB Redox flow battery X-ray computed tomography Compression Carbon felt RFB
作者简介 Corresponding author. E-mail address: rhodri.jervis@ucl.ac.uk
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