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Porous structure and hydrophilic-hydrophobic properties of gas diffusion layers of the electrodes in proton-exchange membrane fuel cells

机译:质子交换膜燃料电池中电极气体扩散层的多孔结构和亲水疏水特性

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摘要

The porous structure and hydrophilic-hydrophobic properties of the gas diffusion layers (GDL) of electrodes on a substrate of carbon paper in proton-exchange membrane fuel cells have been investigated with the methods of standard porosimetry and of pycnometry. GDL containing various fluoroplast concentrations were impregnated with water, and this process has been investigated at 20 and 80 degrees C. The impregnation rate is significantly higher for untreated carbon paper than for teflonated GDL and also increases significantly with increasing temperature. With teflonization of the carbon paper, hydrophilic porosity decreases, while hydrophobic porosity increases. This increase, however, ceases at high fluoroplast concentrations. The concept of hydrophobization effectiveness of the porous carbon substrate of GDL is introduced. It has been established that hydrophobization effectiveness decreases with increasing fluoroplast concentration and depends on the type of suspension. Curves of the angle of wetting of GDL by water versus the pore radius exhibit a minimum. Different values of the angle of wetting of GDL by water in different pores are explained by nonuniform distributions of both fluoroplast particles and hydrophilic surface groups in pores of different dimensions.
机译:用标准孔隙率法和比重法研究了质子交换膜燃料电池中碳纸基材上电极的气体扩散层(GDL)的多孔结构和亲水疏水特性。用水浸渍各种含氟塑料浓度的GDL,并在20和80摄氏度下研究了此过程。未经处理的碳纸的浸渍速率显着高于聚四氟乙烯的GDL,并且随着温度升高也显着提高。随着碳纸的特氟隆化,亲水性孔隙率降低,而疏水性孔隙率提高。然而,这种增加在高的氟塑料浓度下停止。介绍了GDL多孔碳基质疏水化效果的概念。已经确定疏水作用随着氟塑料浓度的增加而降低,并且取决于悬浮液的类型。 GDL被水润湿的角度与孔半径的关系曲线最小。 GDL在不同孔中被水润湿的角度的不同值是由不同尺寸的孔中的氟塑料颗粒和亲水性表面基团的不均匀分布所解释的。

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