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Application of Butler-Volmer equations in the modelling of activation polarization for PEM fuel cells

机译:Butler-Volmer方程在PEM燃料电池活化极化建模中的应用

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Proton exchange membrane (PEM) fuel cells have been under development for many years and appear to be the potential solution for many electricity supply applications. Modelling and computer simulation of PEM fuel cells have been equally active areas of work as a means of developing better understanding of cell and stack operation, facilitating design improvements and supporting system simulation studies. In general, fuel cell models must be capable of predicting values of the activation polarization at both the anode and the cathode. Since the magnitude of an activation polarization for a particular electrode depends on the inverse of the chemical (or electrochemical) reaction rate at that electrode, reaction rate expressions are normally required for each electrode. The reaction rate is commonly expressed as an 'exchange current density', typical symbol i_0, and mechanistic expressions to predict i_0 are, therefore, components of an ideal model. Most expressions for i_0 are based on the Butler-Volmer (B-V) equation or on more approximate equations derived from the B-V equation. Many publications use one of these B-V equations without a critical determination of the applicability or accuracy of the particular equation being used. The present paper examines these questions and makes some recommendations regarding the applicability of each equation in the 'B-V family of equations'. In addition, terminology and symbols have been modified, where possible, to make modelling based on B-V equations more easily understood and applied by those without an extensive background in electrochemistry.
机译:质子交换膜(PEM)燃料电池已经开发了很多年,并且似乎是许多电力供应应用的潜在解决方案。 PEM燃料电池的建模和计算机仿真一直是工作的活跃领域,它是一种手段,可以使人们更好地理解电池和电池堆的运行,促进设计改进并支持系统仿真研究。通常,燃料电池模型必须能够预测阳极和阴极的活化极化值。由于特定电极的活化极化幅度取决于该电极处化学(或电化学)反应速率的倒数,因此通常每个电极都需要反应速率表达式。反应速率通常表示为“交流电流密度”,典型符号为i_0,因此预测i_0的机理表达式是理想模型的组成部分。 i_0的大多数表达式都基于Butler-Volmer(B-V)方程或更基于从B-V方程派生的近似方程。许多出版物使用这些B-V方程式之一,而没有严格确定所使用的特定方程式的适用性或准确性。本文研究了这些问题,并就“ B-V方程组”中每个方程的适用性提出了一些建议。此外,在可能的情况下,对术语和符号进行了修改,以使基于B-V方程的建模更容易被那些没有广泛电化学背景的人理解和应用。

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