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September 10, 2025Applied Sciences0 citationsOpen Access

The Use of Phase Change Materials for Thermal Management of Metal Hydride Reaction

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YXYing XuMMMurray McCurdyMFMohammed Farid

Key Points

  • The development of composite phase change materials can significantly enhance thermal management during metal hydride hydrogen storage.
  • Key properties such as chemical structure, microstructure, and thermal efficiency of CPCMs were evaluated under heating conditions simulating hydrogen reactions.
  • Thermal management in metal hydride reactions is crucial due to the highly exothermic nature of hydrogen absorption processes.
  • Investigating lightweight and shape-stable CPCMs will contribute to advancements in energy storage technologies.

Abstract

To meet the massive increase in energy demand, extensive research has been conducted over the past few decades on developing clean and sustainable energy storage methods. Hydrogen is considered as one of the most promising future energy carriers due to its high energy density and renewability, but it requires storage. Storing hydrogen using metal hydride offers several advantages, including stability, safety compactness and reversibility of the hydrogen absorption/desorption process. Thermal management during hydrogen storage using metal hydride is critically important since the reaction between the metal and hydrogen is highly exothermic. We are aiming to develop thermal storage systems based on composite phase change materials (CPCMs) that absorb the heat generated during hydrogen absorption and release it during desorption, in an effort to improve energy storage efficiency. Lightweight, shape-stable CPCMs are prepared by loading the selected organic phase change materials into expanded graphite and hydrophobic monolithic silica aerogel. The chemical structure, microstructure, thermal properties and leakage of CPCMs are investigated. These samples were subjected to variable power electrical heating to simulate the heat generated during hydrogen reaction, forming lanthanum hydride, according to its published reaction kinetics.

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Cite This Study

Xu et al. (2025) studied this question.

synapsesocial.com/papers/68c1872d9b7b07f3a06117d2https://doi.org/10.3390/app15179657
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