Investigating the Impact of Hydrogen Gas Moisture Content on Electricity Generation in PEM Fuel Cells

B. Dalğiç, Selman Aydın
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Abstract

In the realm of energy sources, non-renewable fossil fuels, such as petroleum derivatives, continue to pose a significant threat to our planet. Currently, hydrogen energy, derived from renewable sources, is under extensive research, primarily due to its high efficiency, versatile applications, and zero carbon emissions. Hydrogen gas has become an indispensable alternative energy source owing to its numerous advantages. The technology that enables efficient utilization of hydrogen gas as an energy source is fuel cells, with Polymer Electrolyte Membrane Fuel Cells (PEM Fuel Cells) being the most significant advancement in this field. In this study, anode and cathode moisture levels were investigated by experimental study on the obtained efficiency of PEM fuel cell performance. Pure hydrogen and oxygen gases were used in the anode and cathode sections of the experiment, respectively. The test stand and a 6 cell 35 watt fuel cell with 9 cm2 active area were used for the test. Temperature and water accumulation, especially humidification in PEM fuel cells, can be achieved by keeping the hydrogen flow, oxygen flow and battery temperature under control. In the experimental study, the fuel cell humidification rate is gradually increased by keeping the flow and line temperature constant. 30% - 35% - 40% - 45% - 50% - 55% - 60% - 65% - 70% of the results obtained in the voltage, amperage and their effects on watts. As a result of the experimental study, humidification rate has a significant effect on the performance of PEM fuel cell. With the increased humidification temperature, the performance of the installed system increased significantly and nominal values were found. However, it is observed that the performance decreases after a certain period of time in the values higher than 60%.
研究氢气水分含量对 PEM 燃料电池发电量的影响
在能源领域,不可再生的化石燃料,如石油衍生物,继续对我们的地球构成重大威胁。目前,人们正在广泛研究从可再生资源中提取的氢能,这主要是因为氢能效率高、应用广泛、零碳排放。氢气因其众多优点已成为不可或缺的替代能源。能够高效利用氢气作为能源的技术是燃料电池,而聚合物电解质膜燃料电池(PEM 燃料电池)是这一领域最重要的进展。本研究通过实验研究了阳极和阴极湿度对 PEM 燃料电池性能效率的影响。实验的阳极和阴极部分分别使用了纯氢和纯氧气体。试验中使用了试验台和活性面积为 9 平方厘米的 6 节 35 瓦燃料电池。温度和积水,尤其是 PEM 燃料电池的加湿,可以通过控制氢气流量、氧气流量和电池温度来实现。在实验研究中,在保持流量和管线温度不变的情况下,燃料电池的加湿率逐渐增加。30% - 35% - 40% - 45% - 50% - 55% - 60% - 65% - 70% 在电压、安培数及其对瓦特的影响方面获得的结果。实验研究结果表明,加湿率对 PEM 燃料电池的性能有显著影响。随着加湿温度的升高,所安装系统的性能显著提高,并找到了额定值。不过,在超过 60% 时,性能会在一段时间后下降。
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