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首页> 外文期刊>International journal of hydrogen energy >Development of Mg-oxide-Ni hydrogen-storage alloys by reactive mechanical grinding
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Development of Mg-oxide-Ni hydrogen-storage alloys by reactive mechanical grinding

机译:反应性机械研磨技术开发Mg-氧化物-Ni-贮氢合金

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Mg-oxide and Mg-oxide-Ni hydrogen storage alloys were prepared by mechanical grinding under H_2 (reactive mechanical grinding). Among these alloys, Mg-(7.5 wt%Fe_2O_3, 7.5wt%Ni) prepared by grinding for 4h with nano-structured Fe_2O_3 particles and Ni showed the best hydrogen storage properties. The as-milled sample absorbed 4.75 wt% H at 593 K under 12 bar H_2 for 60 min. Its activation was accomplished after two hydriding-dehydriding cycles. The activated sample absorbed 4.36 wt% H at 593 K under 12 bar H_2 for 60 min and desorbed 4.26 wt% H at 593 K under 1.0 bar H_2 for 60 min. After hydriding-dehydriding cycling, Mg_2Ni, Fe and MgO are formed. The large bar-like hydrided particles have round and expanding surfaces, suggesting that they expanded during the hydriding reaction, while the dehydrided particles exhibit contracted surfaces with wrinkles.
机译:通过在H_2下进行机械研磨(反应性机械研磨)来制备氧化镁和氧化镁-Ni储氢合金。在这些合金中,用纳米结构的Fe_2O_3和Ni研磨4h制成的Mg-(7.5 wt%Fe_2O_3,7.5wt%Ni)表现出最佳的储氢性能。研磨后的样品在12 bar H_2下于593 K下吸收了4.75 wt%的H 60分钟。在两个氢化-脱水循环后完成了它的活化。活化的样品在12 bar H_2下于593 K下吸收4.36 wt%H 60分钟,并在1.0 bar H_2下于593 K下解吸4.26 wt%H 60 min。氢化-脱水循环后,形成Mg_2Ni,Fe和MgO。大的棒状氢化颗粒具有圆形且膨胀的表面,表明它们在氢化反应期间膨胀,而脱水颗粒显示收缩的表面并具有皱纹。

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