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1)  membrane electrode assemblies
燃料电池膜电极
1.
Effect of Pt content on the structure and performance for membrane electrode assemblies;
Pt含量对燃料电池膜电极组件结构及性能的影响
2)  membrane fuel cell
膜燃料电池
1.
Numerical analysis of proton exchange membrane fuel cell with interdigitated flow fields
交指状流场质子交换膜燃料电池的数值分析
3)  Fuel cell electrode
燃料电池电极
1.
The catalytic properties of these catalysts in hydrogenation of diacetone alcohol and their electric catalytic properties as a fuel cell electrode were studied.
研究了这些催化剂在二丙酮醇加氢和用作燃料电池电极时的催化性质。
2.
The results of XRD and magnetic measurement showed that as the specific area of resin increased, the particle size of Co and Ag on the catalysts with the same metal content decreased, so the catalytic activities of the catalysts in hydrogenation of diacetone alcohol as well as in reduction of oxygen on the fuel cell electrode increased.
X射线衍射 (XRD)和磁测定结果表明 ,随着树脂比表面积的增大 ,具有相同金属含量的催化剂Co和Ag的颗粒减小 ,分散度增大 ,因而催化剂在二丙酮醇加氢以及燃料电池电极上氧还原的催化活性增大。
3.
The metal vapor method was employed to preparate three kind of Pd-Cu/C fuel cell electrodes with different Pd/Cu ratios.
应用金属蒸气法制备了三种金属含量比不同的Pd-Cu/C燃料电池电极。
4)  ion exchange membrane fuel cell
离子膜燃料电池
1.
Studies on the discharge performance of organic syntheticion exchange membrane fuel cell of synthetic phenol;
合成苯酚的有机合成型离子膜燃料电池的研究——Ⅰ电极添加剂对合成苯酚的有机合成型燃料电池放电性能的影响
2.
Gas flow and gas pressure had great effect on the discharge performance of or- ganic synthetic ion exchange membrane fuel cell.
研究了气体流量和分压对合成苯酚的有机合成型离子膜燃料电池放电性能的影响。
5)  ceramic membrane fuel cells
陶瓷膜燃料电池
1.
Bright prospects for development of ceramic membrane fuel cells;
开发陶瓷膜燃料电池(CMFC)大有可为
6)  PEMFC
质子膜燃料电池
1.
With cycling voltammetry curve(C-V), TEM and SEM photographs, the influence of PTFE and Nafion on the platinum utilization in catalyst layer of PEMFC was investigated.
本文利用循环伏安法,结合透射电镜和扫描电镜研究了质子膜燃料电池催化层中加入的聚四氟乙烯(PTFE)和全氟磺酸树脂(Nafion)对催化剂利用率的影响。
补充资料:离子交换膜燃料电池
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性质:一种电解质为氢离子交换膜的低温型水介质氢/氧燃料电池,也称聚合物电解质燃料电池或质子交换膜燃料电池。正、负极均用载铂的催化剂电极材料直接压在膜的两边,形成所谓“零间隙”,电池结构紧凑。由于使用铂作电催化剂,可在40~60℃工作。离子交换膜应有良好的离子导电能力,耐氧化,稳定哇好并能防止气体穿透,常用全氟磺酸型膜,但价贵。20世纪60年代美国双子星座(Gimini)宇宙飞船上使用该系统是一个成功的范例。90年代对减少铂用量的研究有进展,使这种电池有可能提供民用,如电动汽车的动力电源等。

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