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◆ Hydrogen2026-01-26· Dehydrogenation

A Scalable Strategy for Enhancing MgH2 Hydrogen Storage: Pre-Hydrogenation and Catalyst Integration

Robinson Aguirre Ocampo, Julian Arias-Velandia, Julian A. Lenis, Alejandro Zuleta, Sindy Bello, Esteban Correa, Carlos Arrieta, Francisco Javier Bolivar, Félix Echeverria Echeverria

原始摘要(英文原文)· Original abstract
Magnesium has significant potential for hydrogen storage in the solid state because its capacity is about 7.6 wt%. However, the high stability of magnesium hydride requires operating temperatures superior to 380 °C for hydrogen release. It is well known that Ni could catalyze the hydrogen absorption and desorption in magnesium. In this study, carbon-coated nickel nanoparticles were employed as catalysts to enhance the hydrogen absorption and desorption kinetics of pre-hydrogenated magnesium particles. The carbon-coated nickel nanoparticles were uniformly dispersed across the surface of the pre-hydrogenated magnesium particles. In dehydrogenation at 375 °C and 350 °C, the best sample desorbs 4.90 and 4.1 wt%, respectively, in 10 min. After 45 cycles at 375 °C, the hydrogen desorption capacity is 4.91 wt%, indicating a retention capacity of 100%. Our results demonstrate that carbon-coated nickel nanoparticles can be effectively incorporated into pre-hydrogenated magnesium without the need for ball milling, significantly enhancing hydrogen absorption and desorption performance.
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