Effect of neutron dose on the tritium release behavior of Li2TiO3–0.5Li4SiO4 biphasic ceramic
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference34 articles.
1. Solution based synthesis of mixed-phase materials in the Li2TiO3–Li4SiO4 system;Hanaor;J Nucl Mater,2015
2. Preparation of Li2TiO3–Li4SiO4 core–shell ceramic pebbles with enhanced crush load by graphite bed process;Xiang;J Nucl Mater,2015
3. A comprehensive study on Li4Si1− xTixO4 ceramics for advanced tritium breeders;Gong;J Adv Ceram,2020
4. Release kinetics of tritium generation in neutron irradiated biphasic Li2TiO3–Li4SiO4 ceramic breeder;Zhou;J Nucl Mater,2019
5. Comparison of tritium release behavior in Li2TiO3 and promising core-shell Li2TiO3–Li4SiO4 biphasic ceramic pebbles;Qi;J Nucl Mater,2020
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1. Tritium release behavior and application of a release model for the neutron-irradiated biphasic lithium ceramics;Fusion Engineering and Design;2024-09
2. Tritium release performance of biphasic Li2TiO3–Li4SiO4 ceramic pebbles fabricated by centrifugal granulation method;Ceramics International;2024-09
3. Modeling of tritium release behavior of biphasic Li2TiO3–Li4SiO4 ceramics;Ceramics International;2024-07
4. Experiment study on tritium release behavior of Li2TiO3 ceramic breeder irradiated by 14 MeV fusion neutron;International Journal of Hydrogen Energy;2024-05
5. Study of the Surface-Layer Softening Effects in xLi2ZrO3–(1−x)Li4SiO4 Ceramics under Irradiation with He2+ Ions;Ceramics;2024-04-16
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