Rate enhancement of hydrogen generation through the reaction of magnesium hydride with water by MgO addition and ball milling
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference13 articles.
1. Development of Mg-oxide–Ni hydrogen-storage alloys by reactive mechanical grinding
2. Hydrogenation Properties of Mg-5 wt.% TiCr10NbX (x=1,3,5) Composites by Mechanical Alloying Process
3. Hydrogen Storage Characteristics of Melt Spun Mg-23.5Ni-xCu Alloys and Mg-23.5Ni-2.5Cu Alloy Mixed with Nb2O5 and NbF5
4. Impact of quenching process on the surface defect of titanium dioxide for hydrogen production from photocatalytic decomposition of water
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1. Kinetic Analysis of the Reaction of Micrometer-Sized Al–Mg Alloy Particles in a Water Vapor Atmosphere;Langmuir;2024-03-29
2. Enhanced hydrogen generation in low-range acidic solutions using Mg2NiH4 powders and their mixtures ball-milled with NaCl and fused silica;International Journal of Hydrogen Energy;2024-01
3. A highly efficient hydrolysis of MgH2 catalyzed by NiCo@C bimetallic synergistic effect;Journal of Materials Science & Technology;2023-02
4. Power-paste hydrogen storage technologies;Solar-Driven Green Hydrogen Generation and Storage;2023
5. Review on Magnesium Hydride and Sodium Borohydride Hydrolysis for Hydrogen Production;Crystals;2022-09-28
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