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高等学校化学研究 ›› 2016, Vol. 32 ›› Issue (2): 272-277.doi: 10.1007/s40242-016-5331-3

• Articles • 上一篇    下一篇

Agglomerated Pd Catalysts and Their Applications in Hydrogen Production from Formic Acid Decomposition at Room Temperature

LIU Jun, LAN Lixin, WU Chao, LI Rong, LIU Xuanyan   

  1. Department of Pharmaceutical and Biological Engineering, Hunan Chemical Vocational Technology College, Zhuzhou 412004, P. R. China
  • 收稿日期:2015-08-17 修回日期:2015-11-18 出版日期:2016-04-01 发布日期:2015-12-14
  • 通讯作者: LIU Jun E-mail:151283329@qq.com
  • 基金资助:

    Supported by the Programs Foundation of Scientific Research of Education Department of Hunan Province, China (Nos.14C0381, 15C0464).

Agglomerated Pd Catalysts and Their Applications in Hydrogen Production from Formic Acid Decomposition at Room Temperature

LIU Jun, LAN Lixin, WU Chao, LI Rong, LIU Xuanyan   

  1. Department of Pharmaceutical and Biological Engineering, Hunan Chemical Vocational Technology College, Zhuzhou 412004, P. R. China
  • Received:2015-08-17 Revised:2015-11-18 Online:2016-04-01 Published:2015-12-14
  • Contact: LIU Jun E-mail:151283329@qq.com
  • Supported by:

    Supported by the Programs Foundation of Scientific Research of Education Department of Hunan Province, China (Nos.14C0381, 15C0464).

摘要:

Agglomerated Pd catalysts with the nano-porous structure were simply prepared by one-step reduction reaction without using any stabilizer. The Pd catalysts show a high catalytic activity for the decomposition of formic acid at room temperature. Among all the Pd catalysts tested, the PdMg catalyst exhibits the highest catalytic activity. Moreover, the breakthrough of the advanced catalysts is that the above agglomerated Pd catalysts can be easily separated from the liquid system to control the catalytic reaction at any time, which may further promote the practical application of formic acid as a H2 storage material.

关键词: Hydrogen energy, Heterogeneous catalyst, Formic acid decomposition, Pd catalyst, Nano-porous structure

Abstract:

Agglomerated Pd catalysts with the nano-porous structure were simply prepared by one-step reduction reaction without using any stabilizer. The Pd catalysts show a high catalytic activity for the decomposition of formic acid at room temperature. Among all the Pd catalysts tested, the PdMg catalyst exhibits the highest catalytic activity. Moreover, the breakthrough of the advanced catalysts is that the above agglomerated Pd catalysts can be easily separated from the liquid system to control the catalytic reaction at any time, which may further promote the practical application of formic acid as a H2 storage material.

Key words: Hydrogen energy, Heterogeneous catalyst, Formic acid decomposition, Pd catalyst, Nano-porous structure