scholarly journals Metal Hydride – Graphene Composites for Hydrogen Based Energy Storage

2021 ◽  
pp. 162881
Author(s):  
Boris P. Tarasov ◽  
Artem A. Arbuzov ◽  
Alexey A. Volodin ◽  
Pavel V. Fursikov ◽  
Sergey A. Mozhzhuhin ◽  
...  
Keyword(s):  
Energies ◽  
2021 ◽  
Vol 14 (11) ◽  
pp. 3006
Author(s):  
Serge Nyallang Nyamsi ◽  
Ivan Tolj

Two-tank metal hydride pairs have gained tremendous interest in thermal energy storage systems for concentrating solar power plants or industrial waste heat recovery. Generally, the system’s performance depends on selecting and matching the metal hydride pairs and the thermal management adopted. In this study, the 2D mathematical modeling used to investigate the heat storage system’s performance under different thermal management techniques, including active and passive heat transfer techniques, is analyzed and discussed in detail. The change in the energy storage density, the specific power output, and the energy storage efficiency is studied under different heat transfer measures applied to the two tanks. The results showed that there is a trade-off between the energy storage density and the energy storage efficiency. The adoption of active heat transfer enhancement (convective heat transfer enhancement) leads to a high energy storage density of 670 MJ m−3 (close to the maximum theoretical value of 755.3 MJ m−3). In contrast, the energy storage efficiency decreases dramatically due to the increase in the pumping power. On the other hand, passive heat transfer techniques using the bed’s thermal conductivity enhancers provide a balance between the energy storage density (578 MJ m−3) and the energy efficiency (74%). The utilization of phase change material as an internal heat recovery medium leads to a further reduction in the heat storage performance indicators (142 MJ m−3 and 49%). Nevertheless, such a system combining thermochemical and latent heat storage, if properly optimized, can be promising for thermal energy storage applications.


2011 ◽  
Vol 19 (02) ◽  
pp. 149-158 ◽  
Author(s):  
XIANG-YU MENG ◽  
ZE-WEI BAO ◽  
FU-SHENG YANG ◽  
ZAO-XIAO ZHANG

A solar energy storage system based on metal hydrides was proposed in this paper. The numerical simulation of processes of energy storage and thermal release were carried out. The dynamic behavior of heat and mass transfer in the metal hydride energy system were reported. Some factors which influence the whole system performance were discussed. The paper also made an economic analysis of the system, the results proved that the large amounts of metal hydride materials and the configurations of metal hydrides energy storage system involve a critical situation from an economical point of view. Then further analysis, particularly regarding the performance optimization and new plant arrangement of the metal hydrides energy storage system, has to be developed in order to attain the economical feasibility of the proposal.


2019 ◽  
Vol 187 ◽  
pp. 176-190 ◽  
Author(s):  
Kuldeep Kumar ◽  
Mohd Alam ◽  
Dibakar Rakshit ◽  
Viresh Dutta

2017 ◽  
Vol 1 (8) ◽  
pp. 1820-1829 ◽  
Author(s):  
D. Dong ◽  
T. D. Humphries ◽  
D. A. Sheppard ◽  
B. Stansby ◽  
M. Paskevicius ◽  
...  

A prototype metal hydride reactor using supercritical water as a heat transfer fluid for thermal energy storage applications.


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