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Real-Time Microscopic Monitoring of Flow Voltage and Current in the Proton Exchange Membrane Water Electrolyzer

机译:质子交换膜水电解槽中流量电压和电流的实时微观监控

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摘要

Looking for alternative energy sources has been an inevitable trend since the oil crisis, and close attentioned has been paid to hydrogen energy. The proton exchange membrane (PEM) water electrolyzer is characterized by high energy efficiency, high yield, simple system and low operating temperature. The electrolyzer generates hydrogen from water free of any carbon sources (provided the electrons come from renewable sources such as solar and wind), so it is very clean and completely satisfies the environmental requirement. However, in long-term operation of the PEM water electrolyzer, the membrane material durability, catalyst corrosion and nonuniformity of local flow, voltage and current in the electrolyzer can influence the overall performance. It is difficult to measure the internal physical parameters of the PEM water electrolyzer, and the physical parameters are interrelated. Therefore, this study uses micro-electro-mechanical systems (MEMS) technology to develop a flexible integrated microsensor; internal multiple physical information is extracted to determine the optimal working parameters for the PEM water electrolyzer. The real operational data of local flow, voltage and current in the PEM water electrolyzer are measured simultaneously by the flexible integrated microsensor, so as to enhance the performance of the PEM water electrolyzer and to prolong the service life.
机译:自石油危机以来,寻找替代能源已成为必然趋势,氢能一直受到人们的密切关注。质子交换膜(PEM)水电解槽具有高能效,高收率,系统简单,运行温度低的特点。电解器从水中产生氢气,不含任何碳源(假设电子来自可再生资源,例如太阳能和风能),因此它非常清洁,完全满足环境要求。但是,在PEM水电解槽的长期运行中,膜材料的耐用性,催化剂腐蚀以及电解槽中局部流量,电压和电流的不均匀性会影响整体性能。 PEM电解槽的内部物理参数很难测量,并且物理参数相互关联。因此,本研究使用微机电系统(MEMS)技术来开发一种灵活的集成式微传感器。提取内部多个物理信息,以确定PEM水电解槽的最佳工作参数。柔性集成微传感器可同时测量PEM电解槽中局部流量,电压和电流的实际运行数据,从而增强PEM电解槽的性能并延长使用寿命。

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