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The Laboratory for Laser Energetics' Hydrogen Isotope Separation System

机译:激光能量学氢同位素分离系统实验室

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The University of Rochester's Laboratory for Laser Energetics has commissioned a hydrogen Isotope Separation System (ISS). The ISS uses two columns-palladium on kieselguhr and molecular sieve-that act in a complementary manner to separate the hydrogen species by mass. The 4-sL per day throughput system is compact and has no moving parts. The columns and the attendant gas storage and handling subsystems are housed in a 0.8-m(3) glovebox. The glovebox uses a helium cover gas that is continuously processed to extract oxygen and water vapor that permeates through the glovebox gloves and any tritium that is released while attaching or detaching vessels to add feedstock to or drawing product from the system. The isotopic separation process is automated and does not require manual intervention. A total of 315 TBq of tritium was extracted from 23.6 sL of hydrogen with tritium purities reaching 99.5%. Deuterium was the sole residual component in the processed gas. Raffinate contained 0.2 TBq of activity was captured for reprocessing. The total emission from the system to the environment was 0.4 GBq over three weeks. (C) 2016 Elsevier B.V. All rights reserved.
机译:罗彻斯特大学激光能量学实验室已委托氢同位素分离系统(ISS)。国际空间站使用两列色谱柱-硅藻土上的钯和分子筛-以互补的方式起作用,以按质量分离氢物种。每天4-sL的吞吐系统紧凑且没有活动部件。色谱柱以及随之而来的气体存储和处理子系统都放置在0.8米(3)的手套箱中。手套箱使用连续处理的氦气保护气体,以提取透过手套箱手套渗透的氧气和水蒸气,以及在连接或拆卸容器时向系统中添加原料或从中提取产品时释放的任何any。同位素分离过程是自动化的,不需要人工干预。从23.6 sL的氢气中提取了总共315 TBq的with,tri纯度达到99.5%。氘是处理气体中唯一的残留成分。残液含有0.2 TBq的活性被捕获以进行后处理。从系统到环境的总排放量在三周内为0.4 GBq。 (C)2016 Elsevier B.V.保留所有权利。

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