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Modified Butler-Volmer Type Model which Accounts for Triple and Double Phase Boundary Reaction Pathways

机译:修改的巴特勒 - Volmer型号,用于三重和双相边界反应途径

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In recent years, detailed reduced order reaction models have been presented which consider more detailed physics than the widely-used Butler-Volmer (BV) equations. A reduced order oxygen reduction reaction (ORR) model previously developed specifically for yttria stabilized zirconia (YSZ)/lanthanum strontium manganite (LSM) cathodes is studied here. This model requires separate species transport equations to be solved for numerous species and surface coverages resulting in a stiff system of non-linear equations. However, models that apply the traditional BV type equations, while much less computationally intensive, are not able to distinguish between the reactions at the triple phase boundaries (TPBs) and the double phase boundaries (DPBs). In the study, the relationship between over potential and current density at TPBs and DPBs is explored based on the aforementioned ORR model and a new BV type model is proposed for modeling the exchange current density considering both TPB and DPB pathways.
机译:近年来,已经提出了详细的减少的顺序反应模型,其考虑了比广泛使用的管家 - Volmer(BV)方程更详细的物理学。在此研究了先前专门为ytTRIA稳定的氧化锆(YSZ)/镧锶锰(LSM)阴极开发的降低的氧还原反应(ORR)模型。该模型需要单独的物种传输方程来解决多种物种和表面覆盖,导致非线性方程的刚性系统。然而,应用传统的BV型方程的模型,虽然更少计算密集,但不能区分三相边界(TPBS)和双相边界(DPBS)的反应。在该研究中,基于上述ORR模型探索过潜在和电流密度之间的关系,并提出了一种新的BV型模型,用于考虑TPB和DPB途径的换算电流密度。

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