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Hydrogen storage properties of mechanical milled MgH2-nano Ni for solid hydrogen storage material

机译:机械研磨MGH2-NANO NI储氢性能,用于固体储氢材料

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Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen storage (7.6 wt.%), lightweight and a reasonably low cost.However, high working temperature (>300°C), slow reaction kinetics (need more than 1 hour to produce 5 wt% of hydrogen) and difficult activation limit the practical application of Mg-based hydrides.In order to improve their performance, MgHb was catalyzed with Ni nanoparticles which reactively milled under hydrogen atmosphere.Phase identification and microstructure were characterised by XRD and scanning electron microscope (SEM).Hydrogen sorption properties was studied by gravimetric analysis method.The results showed that, small amount of Ni in nanometer scale proved to be as a suitable catalyst for improvement the kinetics of MgH2 and at the same time allowed to reduce the milling time process.
机译:在金属氢化物中,镁具有理论上最高的储氢重量容量(7.6重量%),轻质和合理低成本。然而,高工作温度(> 300°C),缓慢反应动力学(需要超过1小时为了产生5wt%的氢气)和难以激活限制Mg基水合的实际应用。为了提高它们的性能,催化MGHB,其Ni纳米颗粒在氢气氛下反应地研磨。通过XRD表征鉴定和微观结构。通过重量分析方法研究了扫描电子显微镜(SEM)。结果表明,少量Ni以纳米级的少量被证明是改善MGH2的动力学的合适催化剂,同时允许减少铣削时间过程。

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