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Hydrogenation properties of mechanically milled Mg2Ni0.8Cr0.2-CoO/Al2O3 composites*

机译:机械研磨的Mg2Ni0.8Cr0.2-CoO / Al2O3复合材料的加氢性能*

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摘要

Mg2Ni0.8Cr0.2-x wt.% CoO/Al2O3 (x=0.5, 1, 2 and 3) composites were prepared by mechanically milling sintered Mg2Ni0.8Cr0.2 alloy and CoO/Al2O3 compound for 45 h. The addition of CoO/Al2O3 compound resulted in the good kinetics properties of hydriding/dehydriding reaction of the composites. The composite with 1.0 wt.% CoO/Al2O3 catalyst could reach the maximum hydrogen absorption capacity (2.9 wt.%) within 5 min at 393 K under H2 pressure of 4 MPa, and can desorb rapidly at 493 K. The decomposition and synthesis of hydrogen molecule on Mg2Ni0.8Cr0.2 alloy surface was promoted by addition of CoO/Al2O3 catalyst. In addition, the formation of metallic Ni particles, strain and defects during the ball milling process also resulted in the improved hydrogenation performance of Mg2Ni-based alloys.
机译:Mg2Ni0.8Cr0.2-x重量百分比的CoO / Al2O3(x = 0.5、1、2和3)复合材料是通过将烧结的Mg2Ni0.8Cr0.2合金和CoO / Al2O3化合物机械研磨45小时而制备的。 CoO / Al2O3化合物的加入导致复合材料的氢化/脱水反应具有良好的动力学性能。含有1.0 wt。%CoO / Al2O3催化剂的复合材料在393 K和4 MPa的氢气压力下,在5分钟内可以达到最大氢吸收容量(2.9 wt。%),并且在493 K下可以快速解吸。通过添加CoO / Al2O3催化剂促进Mg2Ni0.8Cr0.2合金表面的氢分子。此外,球磨过程中金属镍颗粒的形成,应变和缺陷也导致Mg2Ni基合金的氢化性能提高。

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