稀有金属材料与工程2024,Vol.53Issue(3) :894-901.DOI:10.12442/j.issn.1002-185X.20230092

加氢站氢压缩机用静态氢压缩材料研究进展

Research Progress of Static Hydrogen Compression Materials for Hydrogen Compressor in Hydrogen Refueling Station

阎有花 周少雄
稀有金属材料与工程2024,Vol.53Issue(3) :894-901.DOI:10.12442/j.issn.1002-185X.20230092

加氢站氢压缩机用静态氢压缩材料研究进展

Research Progress of Static Hydrogen Compression Materials for Hydrogen Compressor in Hydrogen Refueling Station

阎有花 1周少雄1
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作者信息

  • 1. 江苏集萃安泰创明先进能源材料研究院有限公司,江苏常州 213002;创明(韶关)绿色能源材料技术研究院有限公司,广东韶关 512000
  • 折叠

摘要

加氢站是氢能产业建设的关键环节,氢压缩机是加氢站的核心关键单体设备之一,高密度安全氢压缩材料是加氢站氢压缩机大规模实用化的基础.本文综述了基于优势资源的高密度AB2型储氢材料研究进展,指出了平台压高度匹配的静态氢压缩材料,低于100 ℃下初级、中级和终极放氢平衡压分别达25、45和85 MPa,满足长管拖车、Ⅲ型瓶乘用车和Ⅳ型瓶商用车应用需求.高效氢压缩材料的多级压力匹配,兼容现有加氢系统,促进加氢站氢压缩机工程化应用.

Abstract

Hydrogen refueling station is the key links in the hydrogen energy industry chain.The hydrogen compressor is one of the central monomer equipment in the hydrogen refueling station,and the high-density safe hydrogen compression material is the foundation of the hydrogen compressor for the large-scale application.This paper summarizes the research progress of the AB2 type hydrogen storage materials based on the resource advantages,and describes the static hydrogen compression materials with highly matching plateau pressure.Below 100 ℃,the hydrogen plateau pressure of the primary,intermediate,and ultimate states reaches 25,45,and 85 MPa,respectively,meeting the application requirements of long-tube trailers,Ⅲ type bottle passenger cars,and Ⅳ type bottle commercial vehicles.The multi-level pressure matching of high-efficiency hydrogen compression materials is compatible with existing hydrogenation systems,promoting the engineering application of hydrogen compressors in the hydrogen refueling station.

关键词

氢压缩机/金属氢化物/Ti基AB2型材料/吸放氢平台压

Key words

hydrogen compressor/metal hydride/Ti-based AB2 type material/hydrogen absorption and desorption platform pressure

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基金项目

国家重点研发计划(2019YFB1505101)

常州市工业科技支撑计划(2021)(CE20210043)

出版年

2024
稀有金属材料与工程
中国有色金属学会,中国材料研究学会,西北有色金属研究院

稀有金属材料与工程

CSTPCDCSCD北大核心
影响因子:0.634
ISSN:1002-185X
参考文献量40
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