Title of article :
Hydriding and dehydriding characteristics of nanocrystalline and amorphous Mg20Ni10−xCox (x = 0–4) alloys prepared by melt-spinning
Author/Authors :
Zhang، نويسنده , , Yang-huan and Li، نويسنده , , Bao-wei and Ren، نويسنده , , Hui-ping and Guo، نويسنده , , Shi-hai and Wu، نويسنده , , Zhong-wang and Wang، نويسنده , , Xin-lin، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
8
From page :
2684
To page :
2691
Abstract :
In order to improve the hydriding and dehydriding performances of the Mg2Ni-type alloys, Ni in the alloy was partially substituted by element Co, and melt-spinning technology was used for the preparation of the Mg20Ni10−xCox (x = 0–4) hydrogen storage alloys. The structures of the as-cast and spun alloys were studied by XRD, SEM and HRTEM. Thermal stability of the as-spun alloys was researched by DSC. The hydrogen absorption and desorption kinetics of the alloys were measured using an automatically controlled Sieverts apparatus. The results showed that no amorphous phase formed in the as-spun Co-free alloy, but the as-spun alloys containing Co showed certain amount of amorphous phase. The hydrogen absorption capacities of the as-cast alloys first increase and then decrease with the variety of Co content. The hydrogen desorption capacities of as-cast and spun alloys rise with increasing Co content. The rapid quenching significantly improved the hydrogenation and dehydrogenation capacities and the kinetics of the alloys. When the quenching rate increased from 0 (as-cast was defined as spinning rate of 0 m/s) to 30 m/s, the hydrogen absorption capacity of the alloys (x = 0) at 200 °C and 1.5 MPa in 20 min rose from 1.39 to 3.12 wt%, and from 1.91 to 2.96 wt% for the alloy (x = 4). The hydrogen desorption capacity of the alloy (x = 0) in 20 min increased from 0.19 to 0.89 wt%, and from 1.39 to 2.15 wt% for the alloy (x = 4).
Keywords :
Mg2Ni-type alloy , Melt-spinning , structure , hydriding and dehydriding characteristics
Journal title :
International Journal of Hydrogen Energy
Serial Year :
2009
Journal title :
International Journal of Hydrogen Energy
Record number :
1657405
Link To Document :
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