1) Hydrogen storage battery
贮氢电池
1.
The factors, including condutive agents, additives, adhesion agent, activeation agents and pressure processing of negative electrode for hydrogen storage battery, were studied by orthogonal test.
用正交法对影响贮氢电池负极制备工艺的因素 :导电剂 ,添加剂 ,粘结剂 ,活化处理和制片压力等进行了研究 ,得到了贮氢电池负极制备工艺的最佳条件。
2) reserve cell
贮备电池
1.
Study on solid state metal-water reserve cell;
金属-水固态贮备电池的研究
3) energy storage battery
贮能电池
1.
Research progress in sodium polysulfide/bromine energy storage battery;
多硫化钠/溴贮能电池的研究进展
4) hydrogen storage electrode
贮氢电极
1.
Study of performances of hydrogen storage electrode modified with CoO;
CoO掺杂对贮氢电极性能影响的研究
2.
Study of temperature propertes of hydrogen storage electrodes;
贮氢电极温度特性的研究
3.
Analyses of degradable causes of hydrogen storage electrodes;
贮氢电极失效原因的分析
5) MH electrode
贮氢电极
1.
Kinetics performance of MH electrode was investigated.
采用电化学沉积镍的方法对贮氢合金电极进行了表面修饰,并对贮氢电极动力学性能进行研究。
2.
The results showed that charge rate has obvious influence on charge electrode potentials and charge efficiency and discharge rate has obvious effect on discharge performance;electrochemical reaction impedance of the MH electrode decreased with the increase of depth of discharge,and increased when the DOD was above 8.
结果表明:在实验选择的充放制度下,充电倍率对贮氢电极的充电电位、充电效率及放电倍率对放电性能有明显的影响;在放电过程中,贮氢电极表面电化学反应阻抗随放电深度增加而减小,当放电深度大于80%时电化学反应阻抗又增大。
3.
The experiment showed that the discharge rapacity of the MH electrode increased a little when 3% silver was added, but the amount of the gas escaped from the simulated cell was obviously reduced.
实验表明,在贮氢电极中添加3%的银添加剂,电极容量略为增加,但明显降低了模拟电池气体的析出量。
6) Ni-MH battery
镍氢电池
1.
The Research of High Performance Ni-MH Battery and Its New Positive Materials;
高性能镍氢电池及其新型正极材料的研究
2.
The efficiency of a Ni-MH battery used in hybrid vehicles
混合动力汽车镍氢电池组的充放电效率分析
3.
56,one of choosed V-based solide solution hydrogen storage alloys, has been considered as promising candidates for negatie electrode materials of Ni-MH battery because of their higher reversible hydrogen storage capatites.
56由于其可逆吸放氢量大,作为镍氢电池负极材料有很大的应用前景。
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。
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。
参考词条