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1.
Effects of Substitute Elements on Hydrogen Storage Properties of Mg_2Ni Alloy
替代元素影响Mg_2Ni合金吸放氢动力学性能研究
2.
Rehydrogenation Performance of MgH_2-Nb_2O_5 System
MgH_2-Nb_2O_5体系吸氢动力学性能
3.
The as-milled alloys show good activation properties and hydrogen absorption kinetics.
该合金具有良好的活化性能和吸氢动力学性能。
4.
Investigations on the Thermodynamics and Kinetics of Mg-based Hydrogen Storage Materials
镁基储氢合金吸放氢热力学和动力学研究
5.
Hydrogen Absorption Kinetics of LaFe_(11.6)Si_(1.4) Alloy and Its Hydride Stability
LaFe_(11.6)Si_(1.4)吸氢动力学及其氢化物稳定性研究
6.
Characteristic of hydrogen sorption of alloy La_2Mg_(16)Ni
La_2Mg_(16)Ni储氢合金吸放氢性能研究(英文)
7.
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
8.
Preparation Assisted by an External High Magnetic Field and Hydriding/Dehydriding Kinetic Mechanism of Mg-based Storage Hydrogen Alloys
磁场辅助合成镁基储氢合金及其吸放氢动力学机理
9.
Kinetcs of H2S Adsorptin on Impregnated Activated Carbon
硫化氢在浸渍活性炭上的吸附动力学研究
10.
Dehydrogenation kinetics of hydrogen storage material 67Mg29C3Ni1Al
储氢材料67Mg29C3Ni1Al的放氢动力学研究
11.
Study on Hydrogen Absorption/Desorption Characteristics of Ti-V-based Solid Solution Type Hydrogen Storage Alloys;
Ti-V基固溶体型储氢合金吸放氢性能的研究
12.
The Research on Adsorption/Desorption Properties and Electronic Mechanism of Magnesium and Its Alloy Hydrides
镁及其合金氢化物吸放氢性能及电子机制研究
13.
The Hydrogen Absorption and Desorption Properties of V-Ti-Cr-Fe Alloys;
V-Ti-Cr-Fe合金吸放氢性能的研究
14.
Adsorption Kinetics of Zn~(2+) on Aluminum Dihydrogen Tripolyphosphate
三聚磷酸二氢铝吸附Zn~(2+)的动力学
15.
Adsorption Mechanism and Kinetics of Magnesium Hydroxide to Ni(Ⅱ) Ions
氢氧化镁对Ni(Ⅱ)吸附机理和动力学
16.
A Study on Modification of Mg-based Alloys and Hydrogenation/Dehydrogenation Properties of the Organic Liquid Catalyzed by Mg-based Alloys;
镁基储氢合金的改性及其催化有机液体吸放氢性能研究
17.
Effects of Al Adding on the Reversible Hydrogen Properties in LiBH_4/Al System
Al添加对LiBH_4可逆吸放氢性能影响的研究
18.
Knowledge Transfer and Dynamics Behavior Pattern of Network Organization(Ⅱ):Absorptive Capacity and Disseminative Capacity;
知识转移与网络组织的动力学行为模式(Ⅱ):吸收能力与释放能力