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학술논문한국수소및신에너지학회논문집2015.08 발행KCI 피인용 2

Mg-13.5wt%Ni 합금 수소화합물의 수소방출에 대한 부피법에 의한 열분석

Volumetric Thermal Analysis of Hydrogen Desorption from Mg-13.5wt%Ni Hydride

한정섭(동아대학교 신소재공학과); 박경덕(현대비앤지스틸)

26권 4호, 308~317쪽

초록

To investigate the effect of microstructure on the formation of the desorption peak, the volumetric thermal analysis technique (VTA) was applied to the Mg-13.5 wt% Ni hydride system. The sample made by the HCS (hydriding combustion synthesis) process had two kinds of Mg microstructures. Linear heating was started with various constant heating rates. Only one peak was appeared in the case of the small initial hydrogen wt% (0.83 wt%). Yet, two peaks were appeared with increasing initial hydrogen wt% (1.85 and 3.73 wt%) when only Mg was hydrogenated. The first peak was formed through the evolution of hydrogen from MgH2, made by eutectic Mg. The second peak was formed through the evolution of hydrogen from MgH2, made by primary Mg. Therefore, this result shows that the microstructure also has a considerable effect on forming the desorption peak. We have also derived the hydrogen desorption equations by VTA to get apparent activation energy when the rate-controlling step for the desorption of the hydrided system is the diffusion of hydrogen through the  phase and the chemical reaction →.

Abstract

To investigate the effect of microstructure on the formation of the desorption peak, the volumetric thermal analysis technique (VTA) was applied to the Mg-13.5 wt% Ni hydride system. The sample made by the HCS (hydriding combustion synthesis) process had two kinds of Mg microstructures. Linear heating was started with various constant heating rates. Only one peak was appeared in the case of the small initial hydrogen wt% (0.83 wt%). Yet, two peaks were appeared with increasing initial hydrogen wt% (1.85 and 3.73 wt%) when only Mg was hydrogenated. The first peak was formed through the evolution of hydrogen from MgH2, made by eutectic Mg. The second peak was formed through the evolution of hydrogen from MgH2, made by primary Mg. Therefore, this result shows that the microstructure also has a considerable effect on forming the desorption peak. We have also derived the hydrogen desorption equations by VTA to get apparent activation energy when the rate-controlling step for the desorption of the hydrided system is the diffusion of hydrogen through the  phase and the chemical reaction →.

발행기관:
한국수소및신에너지학회
DOI:
http://dx.doi.org/10.7316/KHNES.2015.26.4.308
분류:
기계공학

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Mg-13.5wt%Ni 합금 수소화합물의 수소방출에 대한 부피법에 의한 열분석 | 한국수소및신에너지학회논문집 2015 | AskLaw | 애스크로 AI