通过定容变压法研究了不同温度(25~150℃)与初始压力(10~160 kPa)对Zr9Ni11合金吸氢性能的影响.氢化实验结果表明,随着温度的升高,Zr9Ni11合金平衡压力明显升高,但吸氢量随之降低.当温度低于75℃时,Zr9Ni11合金初始吸氢速率随温度升高而增大,而当温度高于75℃时,初始吸氢速率随温度升高而降低.初始氢气压力对合金动力学性能影响显著,初始氢气压力低于50 kPa时,合金吸氢速率随初始压力增长而急剧增加,并且在初始氢气压力较低时,仍能快速吸氢.合金吸氢量与平衡压力也随初始氢气压力增加而增大.XRD与TEM分析表明,合金在吸氢前主要为Zr9Ni11相,吸放氢循环后,变为混晶,同时存在非晶态.SEM分析显示,合金在氢化过程中表面粗糙化并出现大量裂痕.研究表明,Zr9Ni11合金可以作为除氚的备选材料.
参考文献
[1] | Glugla M;Antipenkov A;Beloglazov S et al.[J].Fusion Engineering and Design,2007,82:472. |
[2] | Cristescu R;Cristescu I;Murdoch D et al.[J].Fusion Engineering andDesign,2006,81:763. |
[3] | Poore A S;Jacobs W D .[J].Fusion Science and Technology,2005,48:298. |
[4] | Gary Sandrock .A panoramic overview of hydrogen storage alloys from a gas reaction point of view[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,1999(0):877-888. |
[5] | Kuniaki Watanabe;Kouri Tanaka;Masao Matsuyama .[J].Fusion Engineering and Design,1991,18:27. |
[6] | Penzhorn R D;Devillers M;Sirch M .[J].Journal of Nuclear Materials,1990,170:217. |
[7] | Simonovic B R;Mentus S;Dimitrijevic R .[J].International Journal of Hydrogen Energy,1999,24:449. |
[8] | Kunihiko Tsuchiya;Toshiyuki Kabutomori;Hiroshi Kawamura .[J].Fusion Engineering and Design,2001,58-59:401. |
[9] | Diego Escobar;Sesha Srinivasan;Yogi Goswami .Hydrogen storage behavior of ZrNi 70/30 and ZrNi 30/70 composites[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):223-230. |
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