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Experimental study of hydrogen purge effects on performance and efficiency of an open-cathode Proton Exchange Membrane fuel cell system

机译:氢吹扫对开式阴极质子交换膜燃料电池系统性能和效率影响的实验研究

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摘要

The performance and efficiency of an open-cathode PEM fuel cell system in dead-ended anode (DEA) configuration and hydrogen purges is analyzed in this work. Excess water and crossed-over nitrogen in the anode decrease the hydrogen concentration at the catalyst surface, which in turn causes performance losses. Purging the anode with hydrogen removes water and nitrogen and thus recovers the performance. However, this means wasting hydrogen and decreasing overall system efficiency. Gas chromatography was used to detect and quantify the accumulated nitrogen in the anode during DEA operation. The experiments show that the major performance limitation in the studied system is related to water instead of nitrogen. Moreover, oxygen was detected in the anode exhaust gas after long purge intervals, which is an indicator for corrosion of the cathode carbon support structure. Experimental observations revealed that the need for a hydrogen purge strongly depends on the operating conditions and the state-of-health of the fuel cell. It is shown that flooding on the anode and drying of the cathode catalyst layer may occur simultaneously during purged operation. Therefore, purge decisions must be evaluated online, depending on the operating conditions. © 2013 Elsevier B.V. All rights reserved.
机译:在这项工作中,分析了无端阳极(DEA)配置和氢吹扫的开放式阴极PEM燃料电池系统的性能和效率。阳极中过多的水和越过的氮会降低催化剂表面的氢浓度,进而导致性能损失。用氢气吹扫阳极可除去水和氮气,从而恢复性能。但是,这意味着浪费氢气并降低了整个系统的效率。气相色谱法用于检测和定量DEA操作期间阳极中累积的氮。实验表明,所研究系统的主要性能限制与水而不是氮有关。此外,在长时间的吹扫间隔后,在阳极废气中检测到氧气,这表明阴极碳载体结构受到腐蚀。实验观察表明,是否需要进行氢气吹扫取决于运行条件和燃料电池的健康状态。结果表明,在吹扫操作期间,阳极上的溢流和阴极催化剂层的干燥可能同时发生。因此,必须根据操作条件在线评估清除决策。 ©2013 Elsevier B.V.保留所有权利。

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