Operando study of ultrasound enhanced hydrogen desorption dynamics of Mg-based metal hydrides for efficient hydrogen storage applications
收藏ESRF Portal2028-01-01 更新2026-04-23 收录
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https://doi.esrf.fr/10.15151/ESRF-ES-2171653724
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资源简介:
We are developing innovative and sustainable technologies for hydrogen production and storage. A key research task is to understand the fundamentals of ultrasound-assisted synthesis of metal hydride for efficient hydrogen storage. We will study the highly dynamic and transient interactions between cavitation bubbles and MgH2 (microparticles) which is a solid-state hydrogen storage material that has huge potential in solid-state hydrogen storage and transportation applications. We will use the ultrahigh X-ray imaging capabilities at ID19 to capture in operando the interactions of ultrasonic bubbles and MgH2 microparticles under different ultrasound conditions and different liquid media. The in-situ collected imaging data will help us to reveal the highly dynamic and multiscale particle fragmentation mechanisms in the MgH2 refinement and desorption process, providing indispensable and systematic data for us to optimize the ultrasound-assisted Hydrogen absorption and desorption processes.
提供机构:
University of Hull, School of Engineering & Computer Science, Cottingham Road, Hull, East Yorkshire, Hu6 7rx Hull, United Kingdom; Constellium, Constellium Technology Center, Parc Economique Centr'alp, 38341, Voreppe, FRANCE; CNRS / Sorbonne Universite, Institut des NanoSciences de Paris, 4 Place Jussieu, 75005, Paris, FRANCE; University of Hull, School of Engineering & Computer Science, Cottingham Road Hull, East Yorkshire, HU6 7RX, Hull, UNITED KINGDOM; Daqing Normal University, School of Mechatronic Engineering, Xiyuan Street No. 85, Ranghulu District, 162712, Daqing, CHINA; CNRS UMR7588 Sorbonne Universite, Institut des NanoSciences de Paris, 4 place Jussieu tour 22-12, 75005, Paris, FRANCE
创建时间:
2028-01-01



