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Simultaneous visualization of oxygen distribution and water blockages in an operating triple-serpentine polymer electrolyte fuel cell

机译:同时可视化运行中的三蛇纹石聚合物电解质燃料电池中的氧气分布和水堵塞情况

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摘要

Visualization inside polymer electrolyte fuel cells (PEFCs) is important for elucidating reaction distributions to improve the performance and durability of the cells. An O_2-sensitive porphyrin luminescent dye film was used to visualize oxygen partial pressures and water blockages simultaneously in triple-serpentine gas flow channels in an operating PEFC. Water droplets formed near the exit of a gas-flow channel lowered the oxygen partial pressure noticeably over the channel by blocking air flow near the entrance. Meanwhile, air was continuously supplied from the other channels through the gas diffusion layer, thus allowing power to be generated in the blocked channel. With water blockages, however, the catalyst layer under the channel became flooded by the water produced during the reaction, and the flooded state continued to exist in the catalyst and/or porous layers, even after blowing the water droplet out, so that the power generation was lowered along the channel.
机译:聚合物电解质燃料电池(PEFC)内部的可视化对于阐明反应分布以改善电池的性能和耐久性很重要。使用O_2敏感的卟啉发光染料膜同时观察正在运行的PEFC中三蛇形气流通道中的氧分压和水阻滞。气流通道出口附近形成的水滴通过阻塞入口附近的气流,显着降低了通道上方的氧气分压。同时,通过气体扩散层从其他通道连续地供应空气,从而允许在阻塞的通道中产生电力。然而,由于水的阻塞,通道下方的催化剂层被反应过程中产生的水淹没,甚至在将水滴吹出后,淹没状态仍继续存在于催化剂和/或多孔层中,从而产生了动力。沿通道降低了发电量。

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