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储氢材料 hydrogen storage materials英语短句 例句大全

时间:2019-08-11 17:14:54

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储氢材料 hydrogen storage materials英语短句 例句大全

储氢材料,hydrogen storage materials

1)hydrogen storage materials储氢材料

1.Experimental study on petroleum coke and anthracite using forhydrogen storage materials;石油焦、无烟煤用作储氢材料的试验研究

putational investigation and design of nanostructuredhydrogen storage materials纳米结构储氢材料的计算研究与设计

3.First-pricinples design on atomic scale for new lightweighthydrogen storage materials新型轻质储氢材料的第一性原理原子尺度设计

英文短句/例句

1.MAlH_4(M=Li,Na) Materials for Hydrogen StorageMAlH_4(M=Li,Na)储氢材料

2.Dehydrogenation kinetics of hydrogen storage material 67Mg29C3Ni1Al储氢材料67Mg29C3Ni1Al的放氢动力学研究

3.Synthesis of Mg-based Hydrogen Storage Material and Studies on Hydrogenation Properties;镁基复合储氢材料的制备及气态储氢性能研究

4.Theoretical Studies of the Hydrogen Storage Behaviors of Alloys and Design of the New Hydrogen Storage Materials合金储氢机理与新型储氢材料设计的理论研究

5.The Research on the Microstructure Characteristics of LaNi_5-based Hydrogen Storage Material;LaNi_5基储氢材料微观特性研究

6.Neutron Diffraction Studies of Novel Complex Hydrides新型储氢材料的中子衍射研究(英文)

7.The Effect of Microlitic Carbon in Mg-based Composite Hydrogen-stored Materials微晶碳在镁基复合储氢材料中的作用

putational investigation and design of nanostructured hydrogen storage materials纳米结构储氢材料的计算研究与设计

9.Research Progress of Complex Hydrogen Storage Materials with Al–H Bond含Al–H键络合物储氢材料研究进展

10.Theoretical and Experimental Studies on Metal-Carbon-Based Materials for Hydrogen Storage金属-碳基储氢材料计算与实验研究

11.The Research on Intermediate Phase Hydrides and the Behavior of Helium Atoms in LaNi_5-based Hydrogen Storage Material;LaNi_5储氢材料中间相和氢化物中氦行为研究

12.Study on Controlling Preparation of Carbon/Megnesium Hydrogen Storage Materials and Dehydrogenation Kinetics碳镁储氢材料控制性制备及放氢动力学的研究

13.Preparation, Structure and Performances of New Li-Mg-N-H Complex Hydrogen Storage Materials;新型Li-Mg-N-H复合储氢材料的制备、结构及储氢性能

14.Preparation and Characterization of Hydrogen Storage Materials with Structural Nano-channels;具纳米结构孔道储氢材料的制备及表征

15.Study on Magnesium-based Metal and Molecular Sieve Nanocomposite Hydrogen Storage Materials;镁基金属与分子筛复合纳米储氢材料的研究

16.Investigation on Performances of the Novel Metal-ammine-complexes-based Hydrogen Storage Materials;新型金属氨基络合物基储氢材料的性能研究

17.Investigation on the Phase Structure and Electrochemical Performances of Ball-milled La_2Mg_(17) Composite Hydrogen Storage Material球磨La_2Mg_(17)复合储氢材料结构及电化学性能研究

18.Synthesis and Hydrogen Storage Characteristics of Advanced Mg-based Composites;高容量镁基储氢复合材料的制备与储氢特性

相关短句/例句

hydrogen storage material储氢材料

1.Effect of ball milling methods on synthesis and desorption properties of nanocrystalline Mg_2FeH_6hydrogen storage materials;球磨方式对纳米晶Mg_2FeH_6储氢材料合成与放氢性能的影响

2.Research on influence factors and preparation of carbon nanometer ballhydrogen storage material;碳纳米球储氢材料的制备及影响因素研究

3.Development of research on a kind of new energy carrier-hydrogen storage materials;新型能源载体—储氢材料研究进展

3)hydrogen storage materials作储氢材料

4)LiNH_2 hydrogen storage materialLiNH2储氢材料

5)Mg-based hydrogen storage material镁基储氢材料

1.The research history,preparation technologies and applications ofMg-based hydrogen storage materials in the recent years are expatiated systematically,and the factors affecting hydrogen storage properties ofMg-based hydrogen storage materials are analyzed.对近年来镁基储氢材料的研究开发概况、制备技术以及应用研究等方面进行了系统阐述,分析了影响镁基储氢材料储氢性能的主要因素,总结了采用机械合金化法、储氢合金组元部分替代、添加催化剂制成复合材料及表面改性等方法可以有效改善储氢性能,并对镁基储氢材料研究中存在的问题以及今后的发展方向进行了探讨与展望。

2.Mg-based hydrogen storage material is very promising for hydrogen storage and heat storage application because of its thermal capacity and heat effect.镁基储氢材料储氢容量大,并且吸放氢过程伴随一定的热效应,从而在氢气的存储和热能存储等方面具有潜在的应用前景。

6)Magnesium-based hydrogen storage material镁基储氢材料

1.The influence of nanocrystalline particles and catalysts on the hydriding and dehydrogenating properties of magnesium-based hydrogen storage materials are summarized in this paper.总结了纳米晶、催化剂改性等对镁基储氢材料吸放氢性能的影响,介绍了不同镁基储氢复合材料的吸放氢性能以及基于密度泛函理论的第一原理计算方法在镁基储氢材料吸放氢性能方面所做的一些基础理论研究,指出随着量子化学、凝聚态物理等学科以及计算机技术的发展,理论计算方法在研究镁基储氢材料吸放氢性能方面的作用将越来越重要。

延伸阅读

储氢材料储氢材料hydrogenstoragematerial一类能可逆地吸收和释放氢气的材料。最早发现的是金属钯,1体积钯能溶解几百体积的氢气,但钯很贵,缺少实用价值。20世纪70年代以后,由于对氢能源的研究和开发日趋重要,首先要解决氢气的安全贮存和运输问题,储氢材料范围日益扩展至过渡金属的合金。如镧镍金属间化合物就具有可逆吸收和释放氢气的性质:每克镧镍合金能贮存0.157升氢气,略为加热,就可以使氢气重新释放出来。LaNi5是镍基合金,铁基合金可用作储氢材料的有TiFe,每克TiFe能吸收贮存0.18升氢气。其他还有镁基合金,如Mg2Cu、Mg2Ni等,都较便宜。

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