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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of multi-wall carbon nanotubes supported nano-nickel and TiF3 addition on hydrogen storage properties of magnesium hydride
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Effect of multi-wall carbon nanotubes supported nano-nickel and TiF3 addition on hydrogen storage properties of magnesium hydride

机译:多壁碳纳米管负载纳米镍和TiF3添加对氢化镁储氢性能的影响

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Multi-wall carbon nanotubes supported nano-nickel (Ni/MWCNTs) with superior catalytic effects was introduced to magnesium hydride by the process of hydriding combustion synthesis (HCS) and mechanical milling (MM). The effect of different Ni/MWCNTs contents (5 wt.%, 10 wt.%, 15 wt.%, 20 wt.%) on the hydrogenation and dehydrogenation properties of the compositewas investigated systematically. It is revealed that Mg85-(Ni/MWCNTs) 15 composite shows the best comprehensive hydrogen storage properties, which absorbs 5.68 wt.% hydrogen within 100 s at 373 K and releases 4.31 wt.% hydrogen within 1800 s at 523 K under initial hydrogen pressures of 3.0 and 0.005 MPa, respectively. The in situ formed nano-Mg2Ni and MWCNTs have excellent catalytic effect on the hydrogenation and dehydrogenation performances of MgH2. To further improve the hydrogen absorption/desorption properties, TiF3 was added to the MgeNi/MWCNTs system. The result shows that TiF3 addition has little influence on the thermodynamic performance, but affects greatly the kinetic properties. The Mg-85-(Ni/MWCNTs)(15)-TiF3 composite exhibits an appreciably enhanced hydrogen desorption performance at low temperature, and the hydrogen desorption capacity within 1800 s at 473 K for the TiF3-added composite is approximately four times the capacity of Mg-85-(Ni/MWCNTs) 15 under the same condition. The catalytic effects during hydrogenation and dehydrogenation have been discussed in the study. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过氢化燃烧合成(HCS)和机械研磨(MM)的过程,将具有优异催化作用的多壁碳纳米管负载的纳米镍(Ni / MWCNTs)引入氢化镁中。系统地研究了不同的Ni / MWCNTs含量(5 wt。%,10 wt。%,15 wt。%,20 wt。%)对复合材料氢化和脱氢性能的影响。结果表明,Mg85-(Ni / MWCNTs)15复合材料表现出最好的综合储氢性能,在初始氢下,它在373 K的100 s内吸收5.68 wt。%的氢,在523 K的1800 s内吸收4.31 wt。%的氢。压力分别为3.0和0.005 MPa。原位形成的纳米Mg2Ni和MWCNTs对MgH2的加氢和脱氢性能具有优异的催化作用。为了进一步改善氢的吸收/解吸性能,将TiF3添加到MgeNi / MWCNTs系统中。结果表明,添加TiF3对热力学性能影响不大,但对动力学性能影响较大。 Mg-85-(Ni / MWCNTs)(15)-TiF3复合材料在低温下表现出显着增强的氢气脱附性能,并且添加TiO3的复合材料在473 K下1800 s内的氢气脱附能力约为容量的四倍。 Mg-85-(Ni / MWCNTs)15在相同条件下研究中讨论了加氢和脱氢过程中的催化作用。 (C)2016 Elsevier B.V.保留所有权利。

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