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A microfluidic approach for measuring capillary pressure in PEMFC gas diffusion layers

机译:一种微流体方法,用于测量PEMFC气体扩散层中的毛细管压力

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摘要

A dearth of experimental capillary pressure data limits our understanding and optimization of liquid water transport in PEMFC gas diffusion layers (GDLs). A microfluidic device and method is described for measuring the capillary pressure as a function of liquid water saturation for these thin porous materials with complex, heterogeneous wetting properties. A sample sandwich (hydrophilic membrane GDL-hydrophobic membrane) is key for probing the entire hydrophilic and hydrophobic pore volume of the GDL during sequential liquid intrusion and gas intrusion experiments. The capillary pressure curves for an as-purchased Toray 090 and two differentially-processed Avcarb P75T GDLs were evaluated; each material displayed highly repeatable, but quantitatively different, room temperature capillary pressure curves that matched qualitative differences in their macroscopic wettability. The measurements show that hysteresis between the liquid intrusion and gas intrusion curves is significant. For example, both the Toray and fully wet-proofed Avcarb GDLs appear hydrophobic during most of the liquid intrusion curve and hydrophilic during most of the gas intrusion curve. The implications of this work for water management, and future device designs and experiments are described. (c) 2007 Elsevier B.V. All rights reserved.
机译:一种实验毛细管压力数据的缺乏限制了我们在PEMFC气体扩散层(GDL)中的液体水输送的理解和优化。描述了微流体装置和方法,用于测量毛细管压力作为这些薄多孔材料具有复杂的非均相润湿性质的液体水饱和度的函数。样品夹心(亲水膜GDL-疏水膜)是探测在顺序液体侵入和气体侵入实验期间GDL的全部亲水和疏水孔体积的键。评估用于购置的TORAY 090和两个差异处理的AVCARB P75T GDL的毛细压力曲线;每种材料都显示出高度可重复的,但定量不同,室温毛细管压力曲线匹配其宏观润湿性的定性差异。测量表明,液体侵入和气体入侵曲线之间的滞后是显着的。例如,在大多数液体入侵曲线和大多数气体入侵曲线期间,Toray和完全湿润的AVCARB GDL出现疏水性。描述了这项工作对水管理和未来设备设计和实验的影响。 (c)2007 Elsevier B.v.保留所有权利。

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