Erratum: Quantifying Mass Transfer Rates in Redox Flow Batteries [ J. Electrochem. Soc. , 164 , E3265 (2017)]

  • Milshtein J
  • Tenny K
  • Barton J
  • et al.
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Abstract

© 2017 The Electrochemical Society. All rights reserved. Equation 4 on page E3267 should be:rk= kacFe θ 2+ exp (1 − βRT) nFVθ·ccFe Fesθ 2 2 + + exp(1 − β) nFRT1−2− Vθ−ccFe Fesθ 3 3 + + exp−βnF1 RT−2− Vθ[4] Equation 13 on page E3267 should be: i0 ccθexpαaRTFη−ccθexp−αRTc Fη in =1 +ii0l ccθexpαaRTFη+ccθexp−αRTc Fη[13] On page E3271, the statement that f ≤ 0.07 is inaccurate. This sentence preceding Eq. 32 should read: In the present work, the Fe2+/3+redox couple serves as a stable active material, with facile redox kinetics, for probing cell performance, and the conversion per pass (f) is f ≤ 1, calculated via Eq. 32, where I is the total current (A) through the cell and Q is the flow rate (m3s−1). For the majority of the data within this manuscript, f ≤ 0.2, where the low concentration and low flow rates exhibited the highest values of f, and the lowest values of f were seen for high flow rates. On page E3272, the x-axes of Fig. 8 should be in units of m s−1, as shown here.

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Milshtein, J. D., Tenny, K. M., Barton, J. L., Drake, J., Darling, R. M., & Brushett, F. R. (2017). Erratum: Quantifying Mass Transfer Rates in Redox Flow Batteries [ J. Electrochem. Soc. , 164 , E3265 (2017)]. Journal of The Electrochemical Society, 164(12), X22–X22. https://doi.org/10.1149/2.1191712jes

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