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Magnetic resonance imaging of water distribution and production in a 6 cm~2 PEMFC under operation

机译:运行中6 cm〜2 PEMFC中水分布和产水的磁共振成像

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Polymer electrolyte membrane fuel cell (PEMFC) use perfluorosulfonic acid membranes (for example Nation ~R) as a solid electrolyte and their performances are strongly dependent on membrane hydration. Therefore, the accurate knowledge of water distribution in the membrane and of the zone of water condensation in the fuel cell is a fundamental issue. Nuclear Magnetic Resonance is a non-destructive and non-invasive technique. It is particularly suited for observing the transport properties of water in a membrane. Magnetic Resonance Imaging (MRI) experiments of a whole fuel cell are more difficult to achieve because they require a PEMFC free of ferromagnetic species and with a minimum of paramagnetic materials. Moreover, difficulties arise because of the electric conductance of most of the fuel cell components (bipolar plates, backing layers, electrodes). These issues have been addressed and MRI experiments of a rectangular 6 cm~2 PEMFC under operation have been performed. This fuel cell proved to have performances comparable to commercially available fuel cells. Preliminary results exhibit a progressive accumulation of water close to the gas outlet while the gas inlet remains dry.
机译:聚合物电解质膜燃料电池(PEMFC)使用全氟磺酸膜(例如Nation〜R)作为固体电解质,其性能在很大程度上取决于膜的水合作用。因此,准确了解膜中的水分布以及燃料电池中的水凝结区域是一个基本问题。核磁共振是一种无损无创的技术。它特别适用于观察水在膜中的传输特性。整个燃料电池的磁共振成像(MRI)实验更加难以实现,因为它们需要不含铁磁物质且具有最少顺磁性材料的PEMFC。而且,由于大多数燃料电池部件(双极板,衬里层,电极)的导电性而引起困难。这些问题已经得到解决,并且已经在操作中进行了矩形6 cm〜2 PEMFC的MRI实验。该燃料电池被证明具有可与市售燃料电池相比的性能。初步结果显示,在进气口保持干燥的同时,靠近排气口的水逐渐积累。

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