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Effects of pore size gradient in the substrate of a gas diffusion layer on the performance of a proton exchange membrane fuel cell

机译:气体扩散层基材中的孔径梯度对质子交换膜燃料电池性能的影响

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摘要

The proton exchange membrane fuel cell (PEMFC) is one of the up-and-coming power sources for automotive vehicles. To generate a stable performance during driving, the PEMFC needs to achieve an optimized water management under various humidity conditions. Being the path for the two-phase flow of fuel, air, and water, the gas diffusion layer (GDL) is a critical component, which influences water balance. In this study, a pore size gradient structure is introduced in the substrate of a GDL to control the local capillary pressure gradient, which is the driving force of the water flux inside the PEMFC. Through measurements of steady-state performance, transient response, voltage instability and electrochemical impedance spectroscopy, it was found that the pore size gradient structure improves the cell performance regardless of the relative humidity conditions used (50% and 100%). Furthermore, it is possible to hold the water on the membrane for higher ion conductivity and drain it toward the channel to secure gas supply toward the catalyst layer. In addition, it was also confirmed that the structural change enhances the bending stiffness of the GDL. (C) 2015 Elsevier Ltd. All rights reserved.
机译:质子交换膜燃料电池(PEMFC)是用于汽车的新兴动力源之一。为了在行驶过程中产生稳定的性能,PEMFC需要在各种湿度条件下实现优化的水管理。气体扩散层(GDL)是燃料,空气和水两相流动的路径,是影响水平衡的关键组成部分。在这项研究中,在GDL的基质中引入了孔径梯度结构,以控制局部毛细管压力梯度,这是PEMFC内部水流的驱动力。通过测量稳态性能,瞬态响应,电压不稳定性和电化学阻抗谱,发现孔径梯度结构可改善电池性能,而与所使用的相对湿度条件(50%和100%)无关。此外,可以将水保持在膜上以提高离子电导率,并将水排向通道,以确保向催化剂层的气体供应。另外,还证实了结构变化增强了GDL的弯曲刚度。 (C)2015 Elsevier Ltd.保留所有权利。

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