Artículos de revistas
Effective synthesis of Mg2CoH5 by reactive mechanical milling and its hydrogen sorption behavior after cycling
Fecha
2013-01Registro en:
Verón, María Gisela; Condo, Adriana Maria; Gennari, Fabiana Cristina; Effective synthesis of Mg2CoH5 by reactive mechanical milling and its hydrogen sorption behavior after cycling; Elsevier; International Journal of Hydrogen Energy; 38; 2; 1-2013; 973-981
0360-3199
Autor
Verón, María Gisela
Condo, Adriana Maria
Gennari, Fabiana Cristina
Resumen
Mg2CoH5 was synthesized by reactive mechanical milling (RMM) under hydrogen atmosphere (0.5 MPa) from 2MgH2eCo and 3MgH2eCo mixtures, with a yield >80%. The microstructure, structure and thermal behavior of the phases formed during the processing were investigated by transmission electron microscopy, X-ray diffraction and differential scanning calorimetry. Kinetic properties of the reaction with hydrogen of the 2MgH2eCo and 3MgH2eCo mixtures after RMM were evaluated using modified Sievertstype equipment. The 3MgH2eCo mixture showed better properties for storage applications, with its highest rate of hydrogen absorption and desorption at 300 C, its storage capacity of about 3.7 wt% in less than 100 s, and good stability after cycling. Although the starting material presents Mg2CoH5 as majority phase, the cycling leads to disproportion between Mg and Co. We obtained a mixture of Mg2CoH5, Mg6Co2H11 and MgH2 hydrides, as well as other phases such as Co and/or Mg, depending on experimental conditions.