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Effect of titanium based complex catalyst and carbon nanotubes on hydrogen storage performance of magnesium 被引量:1

Effect of titanium based complex catalyst and carbon nanotubes on hydrogen storage performance of magnesium
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摘要 Mg (MgH2)-based composites, using carbon nanotubes (CNTs) and pre-synthesized titanium based complex (TCat) as the cat- alysts, were prepared by high energy ball milling technique. The use of both catalysts demonstrated markedly improved the hydrogen storage performance, e.g. a significant increase of hydrogen release rate and decrease of desorption temperature. The synthesized composites can absorb almost 6 wt% of hydrogen within 3 min at 200 ~C and desorb 6 wt% hydrogen in 10 min at 310 ~C. The influence of CNTs and TCat on desorption temperature was also investigated by using temperature programmed desorption (TPD). The TPD results reveal that the peak desorption temperature and the onset temperature can be lowered by 109 ~C and 155 ~C, respectively, compared to the non-catalyzed MgH2. The reaction enthalpy and entropy of hydrogen de- sorption for the synthesized MgH2-based composites are calculated by the van't Hoff analysis to be 73.1 kJ/mol H2 and 130.2 J/mol H2 K, respectively. Mg (MgH2 )-based composites, using carbon nanotubes (CNTs) and pre-synthesized titanium based complex (TCat) as the catalysts, were prepared by high energy ball milling technique. The use of both catalysts demonstrated markedly improved the hydrogen storage performance, e.g. a significant increase of hydrogen release rate and decrease of desorption temperature. The synthesized composites can absorb almost 6 wt% of hydrogen within 3 min at 200 ℃ and desorb 6 wt% hydrogen in 10 min at 310 ℃. The influence of CNTs and TCat on desorption temperature was also investigated by using temperature programmed desorption (TPD). The TPD results reveal that the peak desorption temperature and the onset temperature can be lowered by 109 ℃ and 155 ℃, respectively, compared to the non-catalyzed MgH2 . The reaction enthalpy and entropy of hydrogen desorption for the synthesized MgH2 -based composites are calculated by the van't Hoff analysis to be 73.1 kJ/mol H2 and 130.2 J/mol H2K, respectively.
出处 《Science China Chemistry》 SCIE EI CAS 2013年第4期451-458,共8页 中国科学(化学英文版)
基金 supported by the Australian Research Council(ARC)
关键词 hydrogen storage magnesium hydride carbon nanotubes titanium compound catalysts mechanical milling 复合催化剂 储氢性能 碳纳米管 钛基 MgH2 基础 复合材料 程序升温脱附
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  • 1Zi-Ling Xue.Preface[J].Science China Chemistry,2013,56(4):399-401.

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