新型复合材料Mg/MWNTs的储放氢性能
Hydrogen adsorption/desorption property of advanced composite Mg/MWNTs
查看参考文献13篇
文摘
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通过在加氢气氛下高能球磨,制成了新型复合材料Mg/MWNTS。利用XRD,TEM-SAED等手段对该材料进行了微结构分析。采用储放氢实验装置测试了Mg/MWNTs-H_2体系的PCT放氢曲线和放氢动力学性能研究发现:复合材料Mg/MWNTs在2.0 MPa氢压时,373,473,553和598K温度下,最大储氢量(质量分数)分别为0.41%,3.37%,5.70%和6.25%;复合材料Mg/MWNTs氢化物的熔变和熵变的绝对值均低于纯Mg,分别降低了10.51%和3.50%;与纳米晶Mg氢化物相比,复合材料Mg/MWNTs不仅最大储氢量显著增加,而且放氢动力学性能也明显改善。 |
其他语种文摘
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The advanced composite Mg/MWNTs was made by high energy ball-milling under the hydrogen atmosphere. The microstructure was characterized by using XRD, TEM and SAED techniques. The hydrogen desorption PCT curves and the hy-driding/dehydriding kinetics for the composite Mg/MWNTs-H system were examined by taking the apparatus for hydrogen adsorption/desorption. It is found that the maximum hydrogen storage capacities are 0. 41% , 3. 37% , 5. 70% and 6. 25% at temperature of 373, 473, 553 and 598 K under 2. 0 MPa hydrogen pressure respectively. The absolute values of enthalpy variable and entropy variable for the composite Mg/MWNTs hydride are lower about 10. 51% and 3. 50% than that of pure Mg. Compared with the nanocrystalline Mg hydride, not only the maximum hydrogen storage capacity of the composite is greatly increased, but also the desorption kinetics property of the composite is significantly improved. |
来源
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中国有色金属学报
,2003,13(4):850-853 【核心库】
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关键词
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新型复合材料
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Mg/MWNTs
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最大储放氢
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氢化物
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放氢动力学
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地址
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1.
中国科学院金属研究所, 沈阳, 110016
2.
东北大学理学院, 沈阳, 110006
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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1004-0609 |
学科
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冶金工业 |
基金
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国家973计划
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国家自然科学基金
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文献收藏号
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CSCD:1328265
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