A process for synthesizing the Li-Mg-N-H hydrogen storage system from Mg and LiNH2
Journal of Alloys and Compounds 432 巻 1-2 号
289-292 頁
2007-04-25 発行
アクセス数 : 970 件
ダウンロード数 : 220 件
今月のアクセス数 : 10 件
今月のダウンロード数 : 4 件
この文献の参照には次のURLをご利用ください : https://ir.lib.hiroshima-u.ac.jp/00020038
ファイル情報(添付) |
JAllCompd_432_1-2_289.pdf
172 KB
種類 :
全文
|
タイトル ( eng ) |
A process for synthesizing the Li-Mg-N-H hydrogen storage system from Mg and LiNH2
|
作成者 |
Okamoto Keisuke
Tokoyoda Kazuhiko
Fujii Hironobu
|
収録物名 |
Journal of Alloys and Compounds
|
巻 | 432 |
号 | 1-2 |
開始ページ | 289 |
終了ページ | 292 |
抄録 |
We successfully established a method to synthesize the Li-Mg-N-H hydrogen storage system composed of Mg(NH2)2 and LiH from Mg and LiNH2 as starting materials. First of all, Mg and Li2NH were homogeneously mixed by ball-milling for 2 h under 1 MPa argon atmosphere. After that, the mixture was heat-treated at 250 °C for 16 h under vacuum condition to be transformed into Mg3N2 and Li2NH. Target materials, Mg(NH2)2 and LiH, were synthesized by a further heat-treatment for Mg3N2 and Li2NH at 200 °C under 10 MPa hydrogen atmosphere for 12 h. The phases in the sample at each processing stage were examined by X-ray diffraction and Fourier transformation infra-red absorption measurements and confirmed to be the expected ones. From experimental results of a thermal desorption mass spectroscopy, the final hydrogenated sample indicated that ~7 mass% hydrogen was desorbed starting from about 150 °C and peaked around 230 °C under helium flow condition at 5 °C/min heating rate without ammonia emission in our experimental accuracy.
|
著者キーワード |
hydrogen storage materials
mechanochemical synthesis
X-ray diffraction
thermal analysis
|
NDC分類 |
物理学 [ 420 ]
|
言語 |
英語
|
資源タイプ | 学術雑誌論文 |
出版者 |
Elsevier B.V.
|
発行日 | 2007-04-25 |
権利情報 |
Copyright (c) 2006 Elsevier B.V.
|
出版タイプ | Author’s Original(十分な品質であるとして、著者から正式な査読に提出される版) |
アクセス権 | オープンアクセス |
収録物識別子 |
[ISSN] 0925-8388
[DOI] 10.1016/j.jallcom.2006.05.119
[NCID] AA10817249
[DOI] http://dx.doi.org/10.1016/j.jallcom.2006.05.119
|