Title :
Hydrolysis Rate Improvement in Hydrogen Generation System Fueled by Powdery Sodium Borohydride for Fuel-Cell Vehicle
Author :
Tomoda, Keisuke ; Hoshi, Nobukazu ; Haruna, Junnosuke ; Meifen Cao ; Yoshizaki, Atsuhiro ; Hirata, Kazufumi
Author_Institution :
Tokyo Univ. of Sci., Tokyo, Japan
Abstract :
Sodium borohydride (NaBH4) is attractive as a fuel for fuel-cell electric vehicles (FCEVs) and fuel-cell hybrid electric vehicles because of its high energy density. We proposed and constructed a high-density hydrogen generation system that generates a large amount of hydrogen by hydrolysis of powdery NaBH4. However, our ability to conduct long driving tests was restricted by the low hydrogen generation rate at the start of the proposed system, particularly under low temperature. To overcome this problem, we added a citric acid solution catalyst at the start, thereby increasing the rate of hydrogen generation by a factor of 25 compared with the case of using a conventional nickel catalyst. In addition, we confirmed that using such a rapid hydrogen generation system had little effect on the power generation characteristics of a 100-W fuel cell, and we succeeded in conducting our driving tests of a FCEV fueled by powdery NaBH4.
Keywords :
catalysis; fuel cell vehicles; hybrid electric vehicles; sodium compounds; NaBH4; citric acid solution catalyst; fuel-cell hybrid electric vehicles; high-density hydrogen generation system; hydrolysis rate improvement; nickel catalyst; powdery sodium borohydride; power 100 W; power generation characteristics; Cooling; Feeds; Fuel cells; Fuels; Generators; Hydrogen; Water; Fuel cells; Hydrogen; Hydrogen compounds; Road vehicle; Road vehicles; hydrogen; hydrogen compounds; power systems; road vehicles; road-vehicle power systems;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2294994