Computer simulation of tritium release behavior of Li4SiO4 ceramic breeder with an improved packed bed model

Guangming Ran, Mao Yang, Linjie Zhao, Chengjian Xiao
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Abstract

In order to have a deep understanding of the tritium migration and release mechanisms in ceramic breeders, computer simulation of the tritium release behavior of Li4SiO4 ceramic breeder was performed by using an improved tritium release model. The influences of various factors, such as surface adsorbed water, water vapor in the purge gas, hydrogen in the purge gas, grain size and tritium production amount, on the tritium release process were systematically investigated. The simulation results have shown that: 1) The surface adsorbed water and water vapor in the purge gas can remarkably facilitate tritium release as tritiated water (HTO) in low temperature region (typically <450 °C); 2) Adding hydrogen to the purge gas is effective to promote tritium release as tritium gas (HT), but the effectiveness is sensitive to surface adsorbed water and water vapor in the purge gas; 3) Large grain size and tritium production amount can relatively weaken the effects of surface adsorbed water and water vapor in the purge gas. In general, the simulation results were consistent with the observations in tritium release experiments, which were helpful to further elucidate the complex behavior of tritium release from Li4SiO4.

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基于改进填充床模型的Li4SiO4陶瓷增殖器氚释放行为的计算机模拟
为了深入了解陶瓷增殖器中氚的迁移和释放机制,利用改进的氚释放模型对Li4SiO4陶瓷增殖器的氚释放行为进行了计算机模拟。系统地研究了表面吸附水、吹扫气中的水蒸气、吹扫气体中的氢气、晶粒度和产氚量等因素对氚释放过程的影响。模拟结果表明:1)在低温区(通常<;450°C),吹扫气中表面吸附的水和水蒸气可以显著促进氚作为氚化水(HTO)的释放;2) 向吹扫气体中添加氢气可以有效地促进氚作为氚气体(HT)的释放,但其有效性对吹扫气体的表面吸附水和水蒸气敏感;3) 较大的晶粒度和氚的产生量可以相对减弱吹扫气体中表面吸附的水和水蒸气的影响。总的来说,模拟结果与氚释放实验中的观察结果一致,这有助于进一步阐明Li4SiO4释放氚的复杂行为。
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