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1)  H 2-stored material
贮氢材料AB2
1.
Its application trend in the fields of H 2-stored materials(AB 2) ,fuel cell etc.
阐述了氧氯化锆 (氧化锆 )产品在镍氢动力电池负极材料 (贮氢材料AB2 )、燃料电池 (特别是高温固体氧化物燃料电池 )、电池隔膜纸中的应用前景。
2)  hydrogen storage material
贮氢材料
1.
Through analysis of the hydriding/dehydriding process of hydrogen storage material, an apparatus for measuring hydrogen storage properties was designed and set up.
通过对贮氢材料吸放氢过程进行分析,自行设计安装了一套测量贮氢材料贮氢性能的装置。
2.
In this paper,the principle of absorbing/desorbing hydrogen and researching progress of some kinds of light metal-aluminum hydrides as hydrogen storage material are introduced.
介绍了几种轻质金属-铝氢化物贮氢材料的吸放氢机理和研究进展。
3.
Complex metal hydrides with AMH_4-type(A is Li,Na,K and M is B,Al,Ga)are considered as one of the most-potential hydrogen storage materials for its high gravimetric hydrogen content.
AMH_4型(A=Li、Na、K;M=B、Al、Ga)金属络合物贮氢材料由于具备高的氢质量百分比,被认为是最具开发潜力的贮氢材料之一,重点阐述了 NaAlH_4的合成方法、添加催化剂的影响、吸放氢动力学性能分析的研究现状,并分析了 NaAlH_4材料的发展与应用中需解决的问题。
3)  hydrogen storage materials
贮氢材料
1.
Nanotechnology can remarkably modify the hydrogen storage properties of hydrogen storage materials.
将纳米技术与贮氢材料结合起来,可显著的改变材料的贮氢性能。
2.
In this review our interest is focused mainly on the recent developments of reseach on rare earth functional materials,especially on rare earth phosphors and hydrogen storage materials.
本文结合我们自己的工作总结和概括了稀土发光材料和贮氢材料最近几年来的研究和应用新进
4)  storing hydrogen material hydrogen systems
贮氢材料氢系
5)  AB_2-type Laves phase hydrogen storage alloy
AB2型Laves相贮氢合金
1.
The category and characteristics of AB_2-type Laves phase hydrogen storage alloy and the effects of preparation technique on the electrochemical performances of the alloys are expatiated comprehensively, and the present actuality of the investigation on AB_2-type Laves phase hydrogen storage alloy and the achieved level are introduced.
文章主要综述了AB2型Laves相贮氢合金的种类及性能特点以及合金化及制备工艺对合金电化学性能的影响。
6)  vanadium-based storage hydrogen materials
钒基贮氢材料
1.
The Xα(SCC-DV-Xα) cluster method was employed to study the effect of endothermic metals on the properties of vanadium-based storage hydrogen materials.
利用电荷自洽离散变分Xα(SCC-DV-Xα)方法计算了吸热型金属合金化对钒基贮氢材料性能的影响。
补充资料:混合稀土金属-镍系贮氢材料
分子式: MmNi5±X
CAS号:

性质:是用低镁高铈的混合稀土金属、镍和其,他合金元素制备而成,性能略低于LaNi5±X和M1Ni5±X,但价格低廉。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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