A platform for research: civil engineering, architecture and urbanism
Studies of two-phase lithium ceramics Li4SiO4-Li2TiO3 under conditions of neutron irradiation
This work presents the preliminary experimental data on the study of gas release from two-phase lithium ceramics Li4SiO4-Li2TiO3 under neutron irradiation conditions. Experiments were carried out at the WWR-K research reactor (Almaty, Kazakhstan) for ∼4.3 days. The total neutron fluence during the irradiation was ∼1.8·1019n/cm2. In the course of irradiation, two experiments on ceramics heating during irradiation and two experiments with hydrogen isotopes (H2 and D2) supply into the experimental chamber with the sample were performed at a temperature of 680 °C and reactor power of 6 MW. During the entire irradiation, the gas composition in the continuously evacuated ampoule device with samples was recorded. The obtained dependences of the release of tritium-containing molecules and helium during the experiment were qualitatively analyzed.
Studies of two-phase lithium ceramics Li4SiO4-Li2TiO3 under conditions of neutron irradiation
This work presents the preliminary experimental data on the study of gas release from two-phase lithium ceramics Li4SiO4-Li2TiO3 under neutron irradiation conditions. Experiments were carried out at the WWR-K research reactor (Almaty, Kazakhstan) for ∼4.3 days. The total neutron fluence during the irradiation was ∼1.8·1019n/cm2. In the course of irradiation, two experiments on ceramics heating during irradiation and two experiments with hydrogen isotopes (H2 and D2) supply into the experimental chamber with the sample were performed at a temperature of 680 °C and reactor power of 6 MW. During the entire irradiation, the gas composition in the continuously evacuated ampoule device with samples was recorded. The obtained dependences of the release of tritium-containing molecules and helium during the experiment were qualitatively analyzed.
Studies of two-phase lithium ceramics Li4SiO4-Li2TiO3 under conditions of neutron irradiation
Timur Kulsartov (author) / Zhanna Zaurbekova (author) / Regina Knitter (author) / Asset Shaimerdenov (author) / Yevgen Chikhray (author) / Saulet Askerbekov (author) / Assyl Akhanov (author) / Inesh Kenzhina (author) / Gunta Kizane (author) / Yergazy Kenzhin (author)
2022
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
Studies of irradiated two-phase lithium ceramics Li4SiO4/Li2TiO3 by thermal desorption spectroscopy
DOAJ | 2024
|Studies of irradiated two-phase lithium ceramics Li4SiO4/Li2TiO3 by thermal desorption spectroscopy
Elsevier | 2024
|Enhancing properties of Li2TiO3/Li4SiO4 tritium breeding ceramics by chitosan addition
Elsevier | 2023
|Enhancing properties of Li2TiO3/Li4SiO4 tritium breeding ceramics by chitosan addition
DOAJ | 2023
|