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Mechanisms of helium accommodation in lithium metatitanate

机译:偏钛酸锂中氦的容纳机理

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Helium is generated as a by-product of the transmutation of lithium in the breeder blanket region of a fusion reactor. The presence of helium in ceramic breeder materials, such as lithium metatitanate (Li2TiO3), can lead to pressure in the pebble and degradation of mechanical properties as well as influencing tritium retention in the matrix. Here, density functional theory is used to examine the mechanisms of helium accommodation in Li2TiO3 across a range of conditions relevant to a fusion reactor. The results show that the mechanism of helium accommodation depends on the availability of defect trap sites, which itself depends on the stoichiometry of the crystal. It is also shown that helium may displace tritium from lithium vacancy defects and may therefore increase the tritium extraction rate by increasing the fraction of mobile tritium ions. (C) 2015 Elsevier B.V. All rights reserved.
机译:氦气是聚变反应堆中增殖层中锂the变的副产物。陶瓷育种材料(如偏钛酸锂(Li2TiO3))中氦的存在会导致卵石中的压力和机械性能下降,并影响tri在基体中的保留。在这里,密度泛函理论用于检查在与聚变反应堆相关的一系列条件下,Li2TiO3中氦气容纳的机理。结果表明,氦气调节的机制取决于缺陷陷阱位点的可用性,而缺陷陷阱位点本身取决于晶体的化学计量。还显示出氦气可以取代锂空位缺陷中的tri,因此可以通过增加可移动tri离子的比例来提高the的提取率。 (C)2015 Elsevier B.V.保留所有权利。

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