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Anode Degradation Effects in PEMFC Stacks by Localized Fuel Starvation

机译:PEMFC堆中局部燃料不足引起的阳极降解效应

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A study is presented of the anode degradation in a proton exchange membrane fuel cell (PEMFC), due to fuel starvation. First the basic principles of fuel starvation are discussed. We find that fuel starvation may be attained either below a limiting flow rate or below a limiting partial pressure, giving rise to two different processes in the cell, that we name starvation-by-current and starvation-by-voltage, respectively. Then, experimental results are presented and analyzed for anodes working under different conditions in a PEMFC stack. Severe degradation occurs in the anodes of PEMFCs affected by fuel starvation. Degraded anodes become visibly thinner, cracked, and appear firmly adhered to the bipolar plates when disassembling the stack. Thermogravimetric analysis coupled with mass spectrometry shows degradation occurring in the microporous gas diffusion layer and the hydrophobic agent (PTFE), as well as the carbon fibres of the macroporous support (carbon cloth). The initial oxidation of the gas diffusion substrate in the anodes provokes massive flooding of the affected cells and exacerbates their progressive degradation.
机译:质子交换膜燃料电池(PEMFC)由于燃料不足而导致阳极降解的研究已经提出。首先讨论了燃料匮乏的基本原理。我们发现可以在极限流量以下或极限分压以下实现燃料短缺,从而在电池中产生两个不同的过程,分别称为电流饥饿和电压饥饿。然后,给出并分析了PEMFC堆中在不同条件下工作的阳极的实验结果。受燃料不足影响,PEMFC的阳极发生严重降解。分解电池堆时,退化的阳极明显变薄,破裂,并牢固地粘附在双极板上。热重分析与质谱联用显示在微孔气体扩散层和疏水剂(PTFE)以及大孔载体(碳布)的碳纤维中发生降解。阳极中气体扩散基质的初始氧化引起受影响细胞大量泛滥,并加剧了它们的逐步降解。

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