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Mechanism of oxygen electrode delamination in solid oxide electrolyzer cells

机译:固体氧化物电解槽中氧电极分层的机理

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摘要

An electrochemical model for degradation of solid oxide electrolyzer cells is presented. The model is based on concepts in local thermodynamic equilibrium in systems otherwise in global thermodynamic non-equilibrium. It is shown that electronic conduction through the electrolyte, however small, must be taken into account for determining local oxygen chemical potential,μ_(O2) . within the electrolyte. The μ_(O2) within the electrolyte may lie out of bounds in relation to values at the electrodes in the electrolyzer mode. Under certain conditions, high pressures can develop in the electrolyte just near the oxygen electrode/ electrolyte interface, leading to oxygen electrode delamination. These predictions are in accord with the reported literature on the subject. Development of high pressures may be avoided by introducing some electronic conduction in the electrolyte.
机译:提出了降解固体氧化物电解槽的电化学模型。该模型基于系统中局部热力学平衡的概念,否则基于全局热力学非平衡的概念。已经表明,为了确定局部氧化学势μ_(O 2),必须考虑通过电解质的电子传导,尽管很小。在电解液中。在电解模式下,电解质中的μ_(O2)可能与电极上的值无关。在某些条件下,高压可能会在氧气电极/电解液界面附近的电解液中产生高压,导致氧气电极分层。这些预测与有关该主题的报道文献一致。通过在电解质中引入一些电子传导可以避免高压的产生。

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