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Tritium release from neutron-irradiated Li_2O: Transport in porous sintered pellets

机译:从中子辐照的Li_2O中释放release:在多孔烧结球团中的迁移

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摘要

The tritium release behavior from Li_2O sintered pellets (81-88% T.D.) is examined by isothermal heating tests. (1) For the 88% T.D. specimens, the fraction of residual tritium is found to follow the square-root law of the annealing time. The rate-determining process is the migration in the connected micro-pore. (2) For the 81% T.D. specimens, which are annealed after irradiation at 630 K for 4 h, the fraction of residual tritium is also found to follow the square-root law of the annealing time. The rate-determining process is the migration in the connected micro-pore. (3) For the 81% T.D. specimens as irradiated, the tritium release rate is found to follow the square-root law of the annealing time. The rate-determining process is controlled by Kohlrauch stretched exponential form. Tritium trapped in irradiation defects released with recovering the defects by isothermal heating.
机译:通过等温加热测试来检验从Li_2O烧结球团(T-8D为81-88%)中释放release的行为。 (1)对于88%的T.D.试样,发现残留的fraction含量遵循退火时间的平方根定律。速率确定过程是在连接的微孔中的迁移。 (2)对于在630 K辐照4 h后退火的81%T.D.试样,还发现残余tri的含量遵循退火时间的平方根定律。速率确定过程是在连接的微孔中的迁移。 (3)对于81%的T.D.样品,the的释放速率遵循退火时间的平方根定律。速率确定过程由Kohlrauch拉伸指数形式控制。 irradiation被困在辐照缺陷中,并通过等温加热回收了缺陷。

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