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Sensitivity Analysis and Dimensioning of Reactor-Scale Pd/Ag Permeators for the Tritium Extraction and Removal System of the EU-HCPB Blanket

机译:欧盟 - HCPB橡皮布氚萃取和去除系统反应堆尺度PD / AG渗透的敏感性分析与尺寸

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摘要

One of the reference technologies for the fuel cycle of fusion machines is Pd/Ag membranes. This technology is proposed to be implemented in tritium recovery systems because of their exclusive selectivity toward molecular hydrogen isotopes (Q = H, D, T). To perform scaling-up studies for the Tritium Extraction and Removal System of the European DEMOnstration fusion power reactor (DEMO) with a solid blanket, a one-dimensional simulation code was recently developed and successfully validated with experiments. This code relies on different operational (e.g., feed pressure and temperature), geometrical (e.g., permeator length), and membrane-intrinsic (e.g., Q(2) permeability) parameters given as input. The main outcome is the Q(2) permeation efficiency, defined as the Q(2) permeate-to-feed flow ratio. Because of the low concentrations of Q(2) expected at the He stream purging the solid blanket, the surface effects are expected to be important, decreasing the separation efficiency of the Pd/Ag permeators. In this paper the role of surface effects on the permeation efficiency is studied for a DEMO-relevant scenario (feeding mixture: HT/H-2/He). Moreover, a sensitivity study is also given demonstrating the high impact of the permeation area, temperature, and feed pressure on the permeation efficiency of HT.
机译:融合机燃料循环的参考技术之一是Pd / Ag膜。该技术被提出在氚恢复系统中实施,因为它们对分子氢同位素的独家选择性(Q = H,D,T)。为了对欧洲演示融合电力电抗器(演示)的氚提取和移除系统进行缩放研究,使用固体毯子,最近开发了一维模拟代码并成功验证了实验。该代码依赖于不同的操作(例如,进料压力和温度),几何(例如,渗透长度)和作为输入给出的膜内在(例如,Q(2)渗透率)参数。主要结果是Q(2)渗透效率,定义为Q(2)渗透到进给流量。由于Q(2)的低浓度Q(2)在吹擦拭固体橡皮布,表面效应预期是重要的,降低Pd / Ag渗透的分离效率。本文研究了表面影响对渗透效率的作用,用于演示相关场景(饲料混合物:HT / H-2 / H)。此外,还给出了敏感性研究,证明了渗透面积,温度和进料压力对HT的渗透效率的高影响力。

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