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Redox flow batteries for energy storage challenges

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Redox flow batteries for energy storage challenges ( redox-flow-batteries-energy-storage-challenges )

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Figure 2. The performance of different flow field designs in a 2.55 cm2 symmetrical cell for the Fe2+/Fe3+ redox couple. a) kmAe is plotted as a function of characteristic flow velocity (related to flow field dimensions) for different concentrations: 0.2 mol dm-3 (○), 0.5 mol dm-3 (􏲵), and 0.8 mol dm-3 (☐). b) Mean kmAe values fitted to linear relationships along their slope values. Flow field types: parallel (PFF), serpentine (SFF), interdigitated (IDFF), and flow through (FTFF). Adapted with permission from Milshtein et al. [21], Quantifying mass transfer rates in redox flow batteries, Journal of the Electrochemical Society 164(11):E3265–75. Open access licence (2017) CC BY 4.0. 27

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