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Scaling up Studies on PEMFC Using a Modified Serpentine Flow Field Incorporating Porous Sponge Inserts to Observe Water Molecules

机译:使用包含多孔海绵插入物的修饰的蛇形流场来扩大PEMFC研究以观察水分子

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摘要

Flooding of the cathode flow channel is a major hindrance in achieving maximum performance from Proton Exchange Membrane Fuel Cells (PEMFC) during the scaling up process. Water accumulated between the interface region of Gas Diffusion Layer (GDL) and rib of the cathode flow field can be removed by the use of Porous Sponge Inserts (PSI) on the ribs. In the present work, the experimental investigations are carried out on PEMFC for the various reaction areas, namely 25, 50 and 100 cm2. Stoichiometry value of 2 is maintained for all experiments to avoid variations in power density obtained due to differences in fuel utilization. The experiments include two flow fields, namely Serpentine Flow Field (SFF) and Modified Serpentine with Staggered provisions of 4 mm PSI (4 mm × 2 mm × 2 mm) Flow Field (MSSFF). The peak power densities obtained on MSSFF are 0.420 W/cm2, 0.298 W/cm2 and 0.232 W/cm2 compared to SFF which yields 0.242 W/cm2, 0.213 W/cm2 and 0.171 W/cm2 for reaction areas of 25, 50 and 100 cm2 respectively. Further, the reliability of experimental results is verified for SFF and MSSFF on 25 cm2 PEMFC by using Electrochemical Impedance Spectroscopy (EIS). The use of 4 mm PSI is found to improve the performance of PEMFC through the better water management.
机译:阴极流动通道的洪水是在缩放过程中从质子交换膜燃料电池(PEMFC)实现最大性能的主要障碍。通过在肋上使用多孔海绵插入物(PSI),可以除去在阴极漫射层(GDL)界面区域和阴极流场的肋之间积聚的水。在本作工作中,实验研究在PEMFC上进行各种反应区域,即25,50和100cm 2。保持所有实验的化学计量值为2,以避免由于燃料利用差异而获得的功率密度的变化。实验包括两个流场,即蛇纹石流场(SFF)和改性蛇纹石,其具有4mm PSI(4mm×2mm×2mm)流场(MSSFF)的交错规定。与SFF相比,MSSFF上获得的峰值功率密度为0.420W / cm 2,0.298W / cm 2和0.232W / cm 2,其产生0.242W / cm 2,0.213W / cm 2和0.171W / cm 2,用于25,50和100的反应区域CM2分别。此外,通过使用电化学阻抗光谱(EIS)在25cm 2 PEMFC上验证了实验结果的可靠性。发现使用4毫米PSI来改善PEMFC通过更好的水管理的性能。

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