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首页> 外文期刊>Journal of Materials Science >Accelerated hydrogen desorption from MgH _2 by high-energy ball-milling with Al _2O _3
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Accelerated hydrogen desorption from MgH _2 by high-energy ball-milling with Al _2O _3

机译:Al _2O _3的高能球磨加速了MgH _2中氢的解吸

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摘要

The effect of the addition of Al _2O _3 (50 wt%) on the dehydrogenation of MgH _2 was investigated. Composites of the oxide and the hydride were prepared in two ways: by milling the components separately or by co-milling them together in a gear-driven planetary ball mill for 10 min. The co-milled composite (MgH _2-Al _2O _3) released approximately 90% of the maximum hydrogen storage capacity within 30 min under a pressure of 0.003 MPa at 250 °C. In contrast, the composite of the separately milled components did not release hydrogen even after 2 h under the same conditions. BET measurement with nitrogen gas showed a negligible difference in the specific surface areas between the co-milled and separately milled composites. However, the saturation amount of hydrogen gas for the co-milled composite was 30% larger than that of the mixture of separately milled hydride and oxide. The activation energy for hydrogen desorption from the co-milled composite, calculated on the basis of the surface-controlled model was 80 kJ mol ~(-1), a value that is 50 kJ mol ~(-1) lower than that of mixture of the separately milled MgH _2 and Al _2O _3.
机译:研究了Al _2O _3(50 wt%)的添加对MgH _2脱氢的影响。氧化物和氢化物的复合物以两种方式制备:分别研磨组分或在齿轮驱动的行星式球磨机中将它们共同研磨10分钟。共研磨的复合材料(MgH _2-Al _2O _3)在250°C下在0.003 MPa的压力下,在30分钟内释放了最大储氢量的90%。相反,单独研磨的组分的复合物即使在相同条件下2小时后也不会释放氢。用氮气进行的BET测量显示,在共同研磨和分别研磨的复合材料之间,比表面积的差异可以忽略不计。但是,共研磨复合材料的氢气饱和量比单独研磨的氢化物和氧化物的混合物的氢气饱和量大30%。根据表面控制模型计算出的共研磨复合材料的氢解吸活化能为80 kJ mol〜(-1),比混合物低50 kJ mol〜(-1)。分别研磨的MgH _2和Al _2O _3的含量。

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