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Hydrogen generation by aluminum corrosion in cobalt (Ⅱ) chloride and nickel (Ⅱ) chloride aqueous solution

机译:氯化钴(Ⅱ)和氯化镍(Ⅱ)水溶液中铝腐蚀产生的氢气

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摘要

Because of its use in on-board hydrogen portable hydrogen-air fuel cell, hydrogen generation based on the reaction between aluminum and water was evaluated. In the present work, the effect of CoCl_2 and NiCl_2 on aluminum-water reaction was studied. The amount of hydrogen generated linearly increased with increasing NiCl_2 concentration from 1 M to 2.5 M, and reached the maximum with 1-1.5 M COCl_2. However, it dramatically decreased with further increase in COCl_2 and NiCl_2 concentration. The formation of Co/Al and Ni/Al galvanic cell, the decrease in pH, and the permeation of chloride in the oxide layer supported hydrogen generation. Besides these factors, amorphous Co with higher specific surface area acted as the catalyst to hasten hydrogen generation. The hydrogen evolution in 1 M CoCl_2 increased from 30 ℃ to 45 ℃, and then it obviously decreased at 60 ℃. The hydrogen generation in NiCl_2 showed similar behavior. The by-product Co or Ni could be easily separated by use of a magnetic stirring bar and reused in subsequent rounds of aluminum-water reaction.
机译:由于其用于车载氢便携式氢-空气燃料电池中,因此评估了基于铝与水之间的反应产生的氢。本文研究了CoCl_2和NiCl_2对铝-水反应的影响。随着NiCl_2浓度从1 M增加到2.5 M,氢的生成量呈线性增加,并以1-1.5 M COCl_2达到最大值。然而,随着COCl_2和NiCl_2浓度的进一步增加,其急剧降低。 Co / Al和Ni / Al电镀电池的形成,pH的降低以及氯化物在氧化物层中的渗透支持了氢的产生。除这些因素外,具有较高比表面积的无定形Co还用作促进氢生成的催化剂。 1 M CoCl_2中的氢气释放从30℃增加到45℃,然后在60℃时明显减少。 NiCl_2中的氢生成表现出相似的行为。副产物Co或Ni可以通过磁力搅拌棒轻松分离,并在随后的铝水反应循环中重复使用。

著录项

  • 来源
    《Energy》 |2014年第4期|204-209|共6页
  • 作者单位

    School of Chemistry and Materials Science, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

    School of Chemistry and Materials Science, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

    School of Chemistry and Materials Science, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

    School of Chemistry and Materials Science, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

    School of Chemistry and Materials Science, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

    Hebei Chemical and Pharmaceutical College, Shijiazhuang 050031, China;

    Analysis and Testing Centre, Hebei Normal University, Hebei, Shijiazhuang 050024, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum; Hydrogen generation; Ball milling; Hydrolysis reaction;

    机译:铝;氢气产生;球磨;水解反应;

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