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An open circuit voltage equation enabling separation of cathode and anode polarization resistances of ceria electrolyte based solid oxide fuel cells

机译:一个开路电压方程,可分离基于二氧化铈电解质的固体氧化物燃料电池的阴极和阳极极化电阻

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The open circuit voltage (OCV) of solid oxide fuel cells is generally overestimated by the Nernst equation and the Wagner equation, due to the polarization losses at electrodes. Considering both the electronic conduction of electrolyte and the electrode polarization losses, we express the OCV as an implicit function of the characteristic oxygen pressure of electrolyte (p* [atm], at which the electronic and ionic conductivities are the same), and the relative polarization resistance of electrodes (r(c) = R-c/R-i and r(a) = R-a/R-i, where R-i/c/a [Omega cm(2)] denotes the ionic resistance of electrolyte, and the polarization resistances of cathode and anode, respectively). This equation approaches to the Wagner equation when the electrodes are highly active (r(c) and r(a) -> 0), and approaches to the Nernst equation when the electrolyte is a purely ionic conductor (p* -> 0). For the fuel cells whose OCV is well below the prediction of the Wagner equation, for example with thin doped ceria electrolyte, it is demonstrated that the combination of OCV and impedance spectroscopy measurements allows the determination of p*, R-c and R-a. This equation can serve as a simple yet powerful tool to study the internal losses in the cell under open circuit condition. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于电极上的极化损耗,固体氧化物燃料电池的开路电压(OCV)通常被能斯特方程和瓦格纳方程高估。考虑到电解液的电子传导和电极极化损耗,我们将OCV表示为电解液的特征氧压(p * [atm],在此电子和离子电导率相同)的隐式函数。电极的极化电阻(r(c)= Rc / Ri,r(a)= Ra / Ri,其中Ri / c / a [Ωcm(2)]表示电解质的离子电阻,阴极和阴极的极化电阻阳极)。当电极是高活性电极(r(c)和r(a)-> 0)时,该方程式接近Wagner方程;当电解质是纯离子导体(p *-> 0)时,该方程式接近能斯特方程。对于OCV远远低于Wagner方程的预测的燃料电池(例如,掺杂了稀掺杂的二氧化铈电解质),已证明OCV和阻抗谱测量的组合可以确定p *,R-c和R-a。该方程式可以用作研究开路条件下电池内部损耗的简单但功能强大的工具。 (C)2017 Elsevier B.V.保留所有权利。

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