氢气压力对电化学氢泵性能的影响

B. Ivanov, N. A. Ivanova, R. M. Mensharapov, D. D. Spasov, Victoria V. Shkandybina, M. V. Sinyakov
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引用次数: 2

摘要

电化学氢泵(EHP)是一种很有前途的氢净化和压缩技术,例如,它可以用于低压和高压系统的聚变装置。本研究旨在确定在宽压力范围(特别是减压)系统中使用EHP的可能性。实验是在«Sivka»装置上进行的,该装置允许您设置阳极空间中的氢气压力(从0.01到0.3 MPa),进行电化学测量,控制电化学(EC)电池的温度(从20到90°C)。在工作中得到了电流-电压曲线(IV曲线)与阳极空间压力和电芯温度的关系。在室温下,没有发现压力对IV曲线的依赖,这表明动力学限制。随着温度的升高,观察到IV曲线-压力依赖性,这表明EC电池向扩散限制(或混合扩散/动力学)操作模式转变。
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Effect of hydrogen pressure on the electrochemical hydrogen pump performance
An electrochemical hydrogen pump (EHP) is a promising technology for hydrogen purification and compression, for instance, it can be used in the fusion devises in systems with low and high pressure. This study aims to determine the possibility of using EHP in systems with wide pressure range (reduced pressure in particular). Experiments were carried out on the «Sivka» installation that allows you to set the hydrogen pressure (from 0.01 to 0.3 MPa) in the anode space, perform electrochemical measurements, control the temperature of the electrochemical (EC) cell (from 20 to 90°C). The dependence of the current-voltage curve (IV curve) on the pressure in the anode space and on the temperature of the EC cell was obtained in the work. At room temperature no pressure dependence on the IV curve was found, which indicates the kinetic-limiting regime. As the temperature rises, the IV curve – pressure dependence is observed which indicates the transition of the EC cell to the diffusion-limited (or mixed diffusion/kinetic) mode of operation.
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