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The main tritium release peak in the Li4SiO4 and Li4.2Si0.8Al0.2O4 powders is at approximately 600 °C after a high dose irradiation.
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The main peak for tritium release from the irradiated samples that were exposed to air for more than a month, was shifted from 500 to about 250 °C, as compared to that from the unexposed samples.
The tritium inventories in steady state and tritium release of subsystems were obtained.
Understanding of fundamental processes governing tritium release in tritium breeder materials is important for blanket design in fusion reactors.
In this work, the effect of sweep gas species on tritium release behavior was investigated.
This experimental device is called the Tritium Release Test Module (TRTM).
These include all material temperature limits allowing 500 875 °C in the breeder zone to promote tritium release.
The tritium release curves show different characteristics for the Li4SiO4 and Li4.2Si0.8Al0.2O4 ceramics.
This paper presents the engineering design of the IFMIF International Fusion Materials Irradiation Facilityy) Tritium Release Test Module (TRTM).
The behaviors of tritium release from Li4SiO4 and Li4.2Si0.8Al0.2O4 powders were investigated by temperature programmed desorption.
Thus, tritium release experiments were conducted using Caisson Assembly for Tritium Safety Study CATSS) in TPL/JAEA.
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