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首页> 外文期刊>Journal of power sources >In-situ and in-operando analysis of voltage losses using sense wires for proton exchange membrane water electrolyzers
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In-situ and in-operando analysis of voltage losses using sense wires for proton exchange membrane water electrolyzers

机译:原位和OutanDando使用质子交换膜水电解器的感测电线的电压损耗分析

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摘要

Proton exchange membrane water electrolyzer development requires understanding processes at the materials and interface levels to reach the required performance and lifetime targets for increasing market penetration. To achieve the required progress, it is critical to develop advanced in-situ diagnostics that allow observation of the changes that come with the reduction of catalyst loading combined with long-term intermittent operation. This work presents an internal voltage sensing method that enables observing internal voltage drops in an operating electrolyzer cell. It allows the total cell resistance to be separated into anode, CCM, and cathode resistance. The method is demonstrated by operating cells with different anode porous transport layers (PTLs). The changing properties of the PTLs result in significant variations of the resistances. Enhancing the PTL properties with a protective coating reduces the anode resistance significantly. In addition to these observations, the method enables a real-time monitoring of resistance related values that impact performance in water electrolyzers. Longterm experiments with the method allow us to gain insights into processes that occur during operation such as conditioning or degradation. The internal voltage sensing method presented in this study is a novel technique for diagnosing, analyzing, and optimizing water electrolyzers and other energy conversion devices.
机译:质子交换膜水电解柜开发需要了解材料和界面水平的过程,以达到所需的性能和终身目标,以提高市场渗透率。为了实现所需的进展,开发先进的原位诊断至关重要,以便观察随着长期间歇运算而加入催化剂装载的催化剂加载的变化。这项工作介绍了内部电压检测方法,使得能够在操作电解槽单元中观察内部电压下降。它允许将总电池阻力分开到阳极,CCM和阴极电阻中。该方法通过具有不同阳极多孔传输层(PTL)的操作细胞来证明。 PTL的变化性能导致电阻的显着变化。通过保护涂层增强PTL性能显着降低了阳极电阻。除了这些观察结果之外,该方法还可以实时监测阻力在水电解器中的性能的相关值。具有该方法的Longterm实验使我们能够进入在操作期间发生的过程中发生的过程,例如调节或降级。本研究中提出的内部电压感测方法是一种用于诊断,分析和优化水电解器和其他能量转换装置的新技术。

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