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Catalytic effect of nanoparticle 3d-transition metals on hydrogen storage properties in magnesium hydride MgH2 prepared by mechanical milling

机译:纳米3d过渡金属对机械研磨氢化镁MgH2中储氢性能的催化作用

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摘要

We examined the catalytic effect of nanoparticle 3d-transition metals on hydrogen desorption (HD) properties of MgH2 prepared by mechanical ball milling method. All the MgH2 composites prepared by adding a small amount of nanoparticle Fe-nano, Co-nano, Ni-nano, and Cu-nano metals and by ball milling for 2 h showed much better HD properties than the pure ball-milled MgH2 itself. In particular, the 2 mol % Ni-nano-doped MgH2 composite prepared by soft milling for a short milling time of 15 min under a slow milling revolution speed of 200 rpm shows the most superior hydrogen storage properties: A large amount of hydrogen (similar to 6.5 wt %) is desorbed in the temperature range from 150 to 250 degrees C at a heating rate of 5 degrees C/min under He gas flow with no partial pressure of hydrogen. The EDX micrographs corresponding to Mg and Ni elemental profiles indicated that nanoparticle Ni metals as catalyst homogeneously dispersed on the surface of MgH2. In addition, it was confirmed that the product revealed good reversible hydriding/dehydri ding cycles even at 150 degrees C. The hydrogen desorption kinetics of catalyzed and noncatalyzed MgH2 could be understood by a modified first-order reaction model, in which the surface condition was taken into account.
机译:我们检查了纳米粒子3d过渡金属对通过机械球磨法制备的MgH2的氢解吸(HD)性能的催化作用。通过添加少量纳米颗粒的Fe-nano,Co-nano,Ni-nano和Cu-nano金属并通过球磨2 h制备的所有MgH2复合材料均比纯球磨MgH2本身具有更好的HD性能。特别是,在200 rpm的慢速铣削转速下,通过软磨15分钟的短磨时间制备的2 mol%的Ni-纳米掺杂MgH2复合材料显示出最优异的储氢性能:大量的氢气(类似在没有氢气分压的情况下,在He气流下,在150至250摄氏度的温度范围内以5摄氏度/分钟的升温速率解吸1至6.5 wt%的碳。对应于Mg和Ni元素分布的EDX显微照片表明,作为催化剂的纳米颗粒Ni金属均匀地分散在MgH 2的表面上。另外,证实了该产物甚至在150℃下也显示出良好的可逆氢化/脱水循环。催化的和非催化的MgH 2的氢解吸动力学可以通过改进的一级反应模型来理解,其中表面条件为考虑在内。

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