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Mechanism for formation of NaBH_4 proposed as low-pressure process for storing hydrogen in borosilicate glass-sodium solid system: a hydrogen storage material

机译:NaBH_4的形成机理是作为在硼硅酸盐玻璃-钠固体体系中储氢的低压工艺提出的:一种储氢材料

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The mechanism for the formation of sodium borohydride (NaBH_4) was investigated for its ability to store hydrogen in the borosilicate glass-sodium (BSG-Na) solid system under low hydrogen pressure. BSG, which was prepared by melting borax with silica, was used as the starting material in the BSG-Na system that would be prepared to store hydrogen. It was observed that the mechanism for storing hydrogen in the BSG-Na solid system consisted of six steps and when the BSG-Na system was heated under a pressure of 4 atm, which was created through the use of hydrogen atmosphere, the storage of hydrogen occurred at nearly 480° C for approximate duration of 200 min, with the excellent yield (97%). In addition, the hydrogen storage capacity of the NaBH_4 sample was measured using the Au-PS structure, which was designed as a mini-hydrogen cell. It was determined that the minimum amount of NaBH_4 to generate the maximum volume of hydrogen gas was 12 mg/ml at 270 mV
机译:研究了硼氢化钠(NaBH_4)在低氢压下在氢硼硅玻璃钠(BSG-Na)固体体系中的储氢能力的机理。通过将硼砂与二氧化硅熔融而制得的BSG被用作BSG-Na系统中的初始材料,该系统将准备储存氢。观察到,在BSG-Na固体体系中储存氢的机理包括六个步骤,当BSG-Na体系在4 atm的压力下加热时,该氢气是通过使用氢气氛而产生的,氢的存储在接近480°C的温度下约200分钟的持续时间,收率很高(97%)。另外,使用Au-PS结构测量NaBH_4样品的储氢能力,该结构设计为微型氢电池。已确定在270 mV的条件下产生最大氢气量的NaBH_4的最小量为12 mg / ml

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