Hydrogen storage over alkali metal hydride and alkali metal hydroxide composites

被引:0
|
作者
Pei Yu [1 ]
Yong Shen Chua [1 ]
Hujun Cao [1 ]
Zhitao Xiong [1 ]
Guotao Wu [1 ]
Ping Chen [1 ]
机构
[1] Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences
基金
中国国家自然科学基金; 国家杰出青年科学基金;
关键词
hydrogen storage; alkali metal hydroxide; alkali metal hydride; thermodynamic; kinetic;
D O I
暂无
中图分类号
O614.2 [第Ⅱ族金属元素及其化合物];
学科分类号
摘要
Alkali metal hydroxide and hydride composite systems contain both protic(H bonded with O) and hydridic hydrogen. The interaction of these two types of hydrides produces hydrogen. The enthalpy of dehydrogenation increased with the increase of atomic number of alkali metals,i.e.,-23 kJ/molH2 for LiOH-LiH, 55.34 kJ/molH2 for NaOH-NaH and 222 kJ/molH2 for KOH-KH. These thermodynamic calculation results were consistent with our experimental results. H2 was released from LiOH-LiH system during ball milling. The dehydrogenation temperature of NaOH-NaH system was about 150℃; whereas KOH and KH did not interact with each other during the heating process. Instead, KH decomposed by itself. In these three systems, NaOH-NaH was the only reversible hydrogen storage system, the enthalpy of dehydrogenation was about 55.65 kJ/molH2, and the corresponding entropy was ca. 101.23 J/(molH2 K), so the temperature for releasing 1.0 bar H2 was as high as 518℃, showing unfavorable thermodynamic properties. The activation energy for hydrogen desorption of NaOH-NaH was found to be57.87 kJ/mol, showing good kinetic properties.
引用
收藏
页码:414 / 419
页数:6
相关论文
共 50 条
  • [31] Alkali Metal Decorated Planar Tetracoordinate Hydrogen
    Sarmah, Kangkan
    Kalita, Amlan Jyoti
    Guha, Ankur K.
    INORGANIC CHEMISTRY, 2023, 62 (51) : 20919 - 20922
  • [32] HYDROGEN UPTAKE BY AN ALKALI-METAL ION
    RAO, BK
    JENA, P
    EUROPHYSICS LETTERS, 1992, 20 (04): : 307 - 312
  • [33] Hydrogen dynamics of alkali-metal borohydrides
    Verdal, Nina
    Hartman, Michael R.
    Bacon, Margaret E.
    Jenkins, Timothy A.
    Rush, John J.
    Udovic, Terrence J.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 238
  • [34] Hydrogen insertion on alkali metal decamolybdates by spillover
    Eda, K
    Ito, T
    Sotani, N
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1999, 72 (11) : 2451 - 2457
  • [35] Hydrogen Release Studies of Alkali Metal Amidoboranes
    Luedtke, Avery T.
    Autrey, Tom
    INORGANIC CHEMISTRY, 2010, 49 (08) : 3905 - 3910
  • [36] Catalysis of Lithium Chloride and Alkali Metal Borohydrides on Hydrogen Generation of Ammonia and Lithium Hydride System
    Miyaoka, Hiroki
    Nakajima, Keita
    Yamaguchi, Shotaro
    Aoki, Taihei
    Yamamoto, Hikaru
    Okuda, Takahiro
    Goshome, Kiyotaka
    Ichikawa, Takayuki
    Kojima, Yoshitsugu
    JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (34): : 19922 - 19927
  • [37] Alkali Metal Hydride Modification on Hydrazine Borane for Improved Dehydrogenation
    Chua, Yong Shen
    Pei, Qijun
    Ju, Xiaohua
    Zhou, Wei
    Udovic, Terrence J.
    Wu, Guotao
    Xiong, Zhitao
    Chen, Ping
    Wu, Hui
    JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (21): : 11244 - 11251
  • [38] SOLUBILITY OF ALKALI AND ALKALI-EARTH METAL SULFATES IN HYDROGEN ANHYDROUS PEROXIDE
    TITOVA, K
    KOLMAKOVA, EI
    ZHURNAL NEORGANICHESKOI KHIMII, 1995, 40 (03): : 393 - 395
  • [39] On the optimization of hydrogen storage in metal hydride beds
    Kikkinides, ES
    Georgiadis, MC
    Stubos, AK
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2006, 31 (06) : 737 - 751
  • [40] Analysis of a metal hydride reactor for hydrogen storage
    Patil, Sharad D.
    Gopal, M. Ram
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (02) : 942 - 951