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液氮温区固体吸附储氢系统实验研究

金苏柯 黄轩 邵东亮 余萌 谢军龙 陈建业

制冷学报2025,Vol.46Issue(5):32-38,7.
制冷学报2025,Vol.46Issue(5):32-38,7.DOI:10.12465/j.issn.0253-4339.2025.05.032

液氮温区固体吸附储氢系统实验研究

Experimental Study of Solid-State Adsorption Jydrogen Storage System in Liquid Nitrogen Temperature Zone

金苏柯 1黄轩 2邵东亮 1余萌 1谢军龙 3陈建业3

作者信息

  • 1. 江苏省特种设备安全监督检验研究院 南京 210009
  • 2. 华中科技大学中欧清洁与可再生能源学院 武汉 430074
  • 3. 华中科技大学能源与动力工程学院 武汉 430074
  • 折叠

摘要

Abstract

In this study,an experimental platform for cryo-adsorption and hydrogen storage systems was constructed to investigate the cryo-adsorption hydrogen storage law in the system and explore the kinetic and thermodynamic properties of cryo-adsorption hydrogen storage and the hydrogen storage performance of the entire system.The experimental results demonstrated that the adsorbent material exhibited an excellent hydrogen storage capacity under liquid nitrogen temperature zone conditions,and the adsorbent material demonstrated a high hydrogen storage capacity reaching mass-weight ratio of 5.02%,equivalent to the total hydrogen storage density of 16.63 kg/m3 under a charging pressure of 5 MPa and final storage pressure of 3.04 MPa.Through experimental research,the key factors affecting the hydrogen storage performance were revealed.These factors include the microstructural properties of the adsorbent materials,thermodynamic effects during the adsorption process,and experimental operating conditions.This experimental basis provides a foundation for optimizing the performance of hydrogen storage systems.

关键词

低温吸附/储氢性能/多孔材料/液氮温区

Key words

cryo-adsorption/hydrogen storage performance/porous materials/liquid nitrogen temperature zone

分类

能源科技

引用本文复制引用

金苏柯,黄轩,邵东亮,余萌,谢军龙,陈建业..液氮温区固体吸附储氢系统实验研究[J].制冷学报,2025,46(5):32-38,7.

基金项目

本文受江苏省特检院科技计划项目(KJ(Y)202405)和江苏省"双创"博士项目(JSSCBS20230188)资助.(The pro-ject was supported by S&T Program of Special Equipment Safety Supervision Inspection Institute of Jiangsu Province(No.KJ(Y)202405) & Jiangsu Provincial Double-Innovation Doctor Program(No.JSSCBS20230188).) (KJ(Y)

制冷学报

OA北大核心

0253-4339

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