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A distillation column for hydrogen isotope removal from liquid lithium

机译:用于从液态锂中去除氢同位素的蒸馏塔

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Recovery of tritium from plasma-facing components in fusion devices will be vital to future full-scale operation. Liquid, low-Z materials have demonstrated many inherent advantages over solid first wall materials. To this end, a thermal treatment method in the form of a distillation column for extraction of hydrogen isotopes from liquid lithium has been designed, developed, and constructed at the Center for Plasma-Material Interactions at the University of Illinois at Urbana-Champaign. Use of induction heating and lithium condensation stages are the two qualities that set this design apart from other thermal treatment systems. Induction heating capabilities were modeled using the COMSOL Multiphysics software, which were validated when commissioning the physical heater module. Proof-of-concept tests were performed in the prototype column, which were undertaken as batch processes to investigate the efficacy with which the column could remove hydrogen gas from lithium-rich and lithium hydride-rich samples. All of the tests reported used lithium hydride as a surrogate for lithium deuteride and lithium tritide. The design process and results from the initial tests will be discussed, along with the envisioned placement of this treatment scheme in a fully-functional lithium loop.
机译:从聚变设备中面向等离子体的部件中回收对于未来的全面运行至关重要。液态低Z材料已证明比固态第一壁材料具有许多固有优势。为此,已经在伊利诺伊大学香槟分校的等离子体-材料相互作用中心设计,开发和建造了一种以蒸馏塔形式从液态锂中提取氢同位素的热处理方法。感应加热和锂缩合阶段的使用是使该设计与其他热处理系统区分开的两个特质。感应加热功能是使用COMSOL Multiphysics软件建模的,该软件在调试物理加热器模块时已得到验证。在原型色谱柱中进行了概念验证测试,该工艺作为批处理过程进行,以研究该色谱柱从富锂和富氢氢化锂样品中除去氢气的功效。所有测试均报告使用氢化锂替代氘化锂和三硫化锂。将讨论设计过程和初始测试的结果,以及该处理方案在全功能锂回路中的预期放置。

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