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Hydrolysis Rate Improvement in Hydrogen Generation System Fueled by Powdery Sodium Borohydride for Fuel-Cell Vehicle

机译:氢燃料电池粉状氢硼化氢制氢系统水解速率的提高

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摘要

Sodium borohydride $(hbox{NaBH}_{4})$ is attractive as a fuel for fuel-cell electric2 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 $hbox{NaBH}_{4}$. 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 $hbox{NaBH}_{4}$.
机译:硼氢化钠 $(hbox {NaBH} _ {4})$ 作为燃料电池燃料很有吸引力电动汽车(FCEV)和燃料电池混合动力电动汽车,因为其能量密度高。我们提出并构建了一个高密度氢生成系统,该系统通过水解粉末状 $ hbox {NaBH} _ {4} $ 生成大量氢-math> 。但是,我们进行长时间驾驶测试的能力受到所提议系统启动时氢气生成率低的限制,特别是在低温下。为了克服这个问题,我们在一开始就添加了柠檬酸溶液催化剂,从而与使用常规镍催化剂的情况相比,将氢的生成速率提高了25倍。此外,我们确认使用这种快速制氢系统对100W燃料电池的发电特性几乎没有影响,并且我们成功地进行了由粉状 $ hbox {NaBH} _ {4} $

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