자전연소합성법으로 제조한 Zr계 AB_2-x M_x 금속수소화물의 수소저장특성
Hydrogen Storage Properties of Zr-Based AB_2-x M_x Metal Hydrides Made by Hydriding Combustion Synthesis (HCS)
허태홍(동아대학교); 한정섭(동아대학교); 김진호(한국세라믹기술원)
50권 3호, 256~262쪽
초록
This study investigated the hydrogen storage properties of Zr-Based AB_2-xM_x metal hybride made by HCS (Hydriding Combustion Synthesis). The materials were prepared by HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm, HCS 80 wt% AB_2-20 wt% Mg and pure Zr-Based AB2, These materials were activated at 298 K under 20 bar. Both HCS 80 wt% AB_2-20 wt% Mg and HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm were absorbed within 1 minute. In the case of the AB_2, it was perfectly absorbed within 6 minutes. Then, the materials were evaluated to obtain P-C-T (Pressure-Composition-Temperature) curves at 298K. As a result, the hydrogen storage capacity of HCS 80 wt% AB_2-20 wt% Mg, HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 were determined to be 1.2, 1.6 and 1.74 wt%, respectively. The activation energy and rate controlling step were calculated by the Johnson-Mehl Avrami equation. The activation energies of HCS 80 wt% AB_2-20 wt%Mg, HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 were 26.91, 20.45, and 60.41 kJ/mol,respectively. Also, the values of η in the Johnson-Mehl Avrami equation for HCS 80 wt% AB_2-20 wt% Mg,HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 are 0.60, 0.51, and 0.44. So, the rate controlling steps which indicate hydrogen storage mechanism are an one dimensional diffusion process.
Abstract
This study investigated the hydrogen storage properties of Zr-Based AB_2-xM_x metal hybride made by HCS (Hydriding Combustion Synthesis). The materials were prepared by HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm, HCS 80 wt% AB_2-20 wt% Mg and pure Zr-Based AB2, These materials were activated at 298 K under 20 bar. Both HCS 80 wt% AB_2-20 wt% Mg and HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm were absorbed within 1 minute. In the case of the AB_2, it was perfectly absorbed within 6 minutes. Then, the materials were evaluated to obtain P-C-T (Pressure-Composition-Temperature) curves at 298K. As a result, the hydrogen storage capacity of HCS 80 wt% AB_2-20 wt% Mg, HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 were determined to be 1.2, 1.6 and 1.74 wt%, respectively. The activation energy and rate controlling step were calculated by the Johnson-Mehl Avrami equation. The activation energies of HCS 80 wt% AB_2-20 wt%Mg, HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 were 26.91, 20.45, and 60.41 kJ/mol,respectively. Also, the values of η in the Johnson-Mehl Avrami equation for HCS 80 wt% AB_2-20 wt% Mg,HCS 80 wt% AB_2-15 wt% Mg-5 wt% Mm and pure Zr-Based AB_2 are 0.60, 0.51, and 0.44. So, the rate controlling steps which indicate hydrogen storage mechanism are an one dimensional diffusion process.
- 발행기관:
- 대한금속·재료학회
- 분류:
- 재료공학