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首页> 外文期刊>International journal of hydrogen energy >Water consumption during solid state sodium borohydride hydrolysis
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Water consumption during solid state sodium borohydride hydrolysis

机译:固态硼氢化钠水解过程中的耗水量

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In this paper nickel acetate catalyzed sodium borohydride cartridges have been prepared and hydrolyzed with water for hydrogen production. Two technological solutions have been tested to increase the overall hydrogen yield, namely a porous water diffuser and a hydrophobic membrane. The first was used to improve water diffusion inside the hydride while the second to confine water inside the cartridge. The generated hydrogen flow showed a very reproducible behavior. Hydrogen promptly evolved just after water was pumped into the cartridge. After some initial peaks, a constant hydrogen flow has been recorded for the whole reaction time. The constant flow was related to the presence of the porous diffuser. The use of a hydrophobic membrane to confine the water inside the cartridge allowed to increase the overall hydrogen yield: about 6 water molecules per mol of hydride were required to complete the reaction. The reaction product was identified by XRD as Na_2b_2O_4*8H_2O. The cartridge hydrogen gravimetric content, based on water and sodium borohydride weight, was as high as 4.64%.
机译:在本文中,已经制备了乙酸镍催化的硼氢化钠滤筒,并用水将其水解以产生氢气。已经测试了两种技术解决方案以提高总氢产率,即多孔水扩散器和疏水膜。第一个用于改善氢化物内部的水扩散,而第二个用于将水限制在滤筒内。产生的氢流表现出非常可再现的行为。在将水泵入药筒后,氢气迅速逸出。在一些初始峰之后,在整个反应时间内记录到恒定的氢流量。恒定流量与多孔扩散器的存在有关。使用疏水膜将水限制在药筒内可以提高总氢产量:每摩尔氢化物需要约6个水分子才能完成反应。通过XRD将反应产物鉴定为Na_2b_2O_4 * 8H_2O。基于水和硼氢化钠的重量,药筒氢重量含量高达4.64%。

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