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System mitigated strategies on fuel cell degradation of start/stop procedure

机译:启动/停止程序燃料电池劣化的系统缓解策略

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The improvement of fuel cell system lifetime is a key factor of commercialized fuel cell vehicle. The fuel cell degradation issues of vehicle application are related to dynamic load change, start/stop procedure, idle and high load operational modes [1]. Y. Yu et al. [2] reviewed the degradation effect which caused by the start up and shut down (SUSD) procedure. The "reversed current" mechanism induces the high local cell voltage and results in carbon corrosion or water electrolysis on cathode electrode. With system mitigated strategies, such as gas purge, shunt short circuit and control of procedure time, the cycle numbers of SUSD could be improved to 1,000. M.L. Perry [3] proposed potential control operation can improve the SUSD cycles to 12,000 with limited fuel cell degradation. This research investigates a single cell test at different SUSD control program, for example, to use vacuum pump, gas purge, shunt voltage control and other process control strategy, so that the fuel cell SUSD frequency can up to 10,000 times for vehicle application.
机译:燃料电池系统寿命的改善是商业化燃料电池车的关键因素。车辆应用的燃料电池劣化问题与动态负载变化,启动/停止过程,空闲和高负载操作模式有关[1]。 Y. Yu等人。 [2]审查了由启动和关闭(SUSD)程序引起的降解效果。 “反向电流”机构诱导高局部电池电压,并导致阴极电极上的碳腐蚀或水电解。通过系统缓解策略,如气体吹扫,分流短路和程序时间,苏斯的循环数可以提高到1,000。 M.L. Perry [3]所提出的潜在控制操作可以通过有限的燃料电池降解将SUSD循环改善为12,000个。本研究调查了不同SUSD控制程序的单个电池测试,例如,使用真空泵,气体吹扫,分流电压控制和其他过程控制策略,使燃料电池SUSD频率可以高达车辆应用的10,000次。

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