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Key technology and application of AB2 hydrogen storage alloy in fuel cell hydrogen supply system

氢气储存 吸附低温 解吸 多物理 氢燃料 材料科学 高压电解 氢燃料车 压缩氢 核工程 合金 化学工程 化学 热力学 冶金 物理 吸附 工程类 有限元法 物理化学 电解 电解质 有机化学 电极
作者
Ming Yao,Jianguang Yuan,Bao Zhang,Youhua Yan,Shaoxiong Zhou,Ying Wu
出处
期刊:Materials Reports: Energy [Elsevier]
卷期号:4 (1): 100251-100251 被引量:7
标识
DOI:10.1016/j.matre.2024.100251
摘要

At present, there is limited research on the application of fuel cell power generation system technology using solid hydrogen storage materials, especially in hydrogen-assisted two-wheelers. Considering the disadvantages of low hydrogen storage capacity and poor kinetics of hydrogen storage materials, our primary focus is to achieve smooth hydrogen ab-/desorption over a wide temperature range to meet the requirements of fuel cells and their integrated power generation systems. In this paper, the Ti0·9Zr0·1Mn1·45V0·4Fe0.15 hydrogen storage alloy was successfully prepared by arc melting. The maximum hydrogen storage capacity reaches 1.89 wt% at 318 K. The alloy has the capability to absorb 90 % of hydrogen storage capacity within 50 s at 7 MPa and release 90 % of hydrogen within 220 s. Comsol Multiphysics 6.0 software was used to simulate the hydrogen ab-/desorption processes of the tank. The flow rate of cooling water during hydrogen absorption varied in a gradient of (0.02 + x) m s−1 (x = 0, 0.02, 0.04, 0.06, 0.08, 0.1, 0.12). Cooling water flow rate is positively correlated with the hydrogen absorption rate but negatively correlated with the cost. When the cooling rate is 0.06 m s−1, both simulation and experimentation have shown that the hydrogen storage tank is capable of steady hydrogen desorption for over 6 h at a flow rate of 2 L min−1. Based on the above conclusions, we have successfully developed a hydrogen-assisted two-wheeler with a range of 80 km and achieved regional demonstration operations in Changzhou and Shaoguan. This paper highlights the achievements of our team in the technological development of fuel cell power generation systems using solid hydrogen storage materials as hydrogen storage carriers and their application in two-wheelers in recent years.

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