硼氢化钠
化学
乙二醇
放热反应
水解
氢气储存
钠
氢
水溶液
无机化学
硼氢化
有机化学
催化作用
作者
Jianzhong Zhang,Timothy S. Fisher,J.P. Gore,Debasis Hazra,Padmakumar Ramachandran
标识
DOI:10.1016/j.ijhydene.2006.02.026
摘要
On-board hydrogen storage has been identified as one of the most challenging technical barriers to the possible transition from gasoline to hydrogen powered vehicles. One common developmental system uses sodium borohydride and water to generate hydrogen. The system offers many advantages over other types of storage methods such as compressed hydrogen, liquid hydrogen and metal hydrides. However, previous reports on the heat of reaction of sodium borohydride hydrolysis are inconsistent. As a result, calorimetry measurements have been conducted to clarify this issue. The heat of reaction of sodium borohydride hydrolysis was measured to be -210±11kJ/mol (exothermic). Furthermore, a recently filed patent indicates that sodium borohydride alcoholysis using ethylene glycol may offer some advantages over the aqueous system in terms of regeneration and low temperature operation. The heat of reaction of sodium borohydride with ethylene glycol was measured to be -227±8kJ/mol (exothermic).
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