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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >LITHIUM SOL-GEL CERAMICS FOR TRITIUM BREEDING APPLICATION
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LITHIUM SOL-GEL CERAMICS FOR TRITIUM BREEDING APPLICATION

机译:锂溶胶凝胶陶瓷在T中的应用

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摘要

Tritium release experiments are performed on different lithium sol-gel ceramics showing identical microstructures. For gamma-LiAlO2 type ceramics [Li4+xAl4-3xSi2xO8 (0 less than or equal to x less than or equal to 0.25)], the increase of the concentration of silicon atoms leads to a reduction of the temperature at which the tritium release curve reaches a maximum. This corresponds to a decrease of diffusion and desorption activation energies and can be related to the acidity of silanol groups which improves the tritium ion mobility. Compared to gamma-LiAlO2 type ceramics, the tritium release takes place at lower temperatures for lithium zirconate and titanate ceramics. Lithium titanate ceramics present a well resolved release peak, at 300 degrees C, associated with a very low value of the desorption energy. This could be related to the presence of reducing non-stoichiometry defects at the ceramic surface. [References: 15]
机译:showing释放实验是在显示出相同微观结构的不同锂溶胶-凝胶陶瓷上进行的。对于γ-LiAlO2型陶瓷[Li4 + xAl4-3xSi2xO8(0小于或等于x小于或等于0.25)],硅原子浓度的增加导致the释放曲线的温度降低达到最大。这对应于扩散和解吸活化能的降低,并且可能与硅烷醇基团的酸度有关,从而提高了ion离子的迁移率。与γ-LiAlO2型陶瓷相比,锆酸锂和钛酸盐陶瓷在较低温度下释放release。钛酸锂陶瓷在300摄氏度时呈现出良好的释放峰,与非常低的解吸能值相关。这可能与减少陶瓷表面的非化学计量缺陷有关。 [参考:15]

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