Gas Chromatography and Thermal Cycling Absorption Techniques for Hydrogen Isotopes Separation in Water Detritiation Systems

Hydrogen Pub Date : 2023-09-21 DOI:10.3390/hydrogen4030044
Silvano Tosti
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Abstract

This work introduces state-of-the-art water detritiation processes and discusses the main technologies and materials adopted. Focus is given to the gas chromatography (GC) and the thermal cycling absorption process (TCAP), which are studied as potential back-end technologies for tritium recovery through a water detritiation system designed for a small-scale unit. GC and the TCAP are evaluated critically in order to establish their applicability for the final purification of the DT stream recovered at the bottom of the cryo-distillation column of a water detritiation unit. Both solutions (GC and the TCAP with an inverse column) exhibit safe and feasible operation modes and are characterised by a good technological level; furthermore, both of these processes meet the main design specifications required by the proposed application. However, the use of GC is preferred, since this system can operate with modest temperature cycling and producing streams (D2 and T2) of better purity.
气相色谱和热循环吸收技术用于水分解系统中氢同位素的分离
本文介绍了目前最先进的水降解工艺,并讨论了所采用的主要技术和材料。重点介绍了气相色谱法(GC)和热循环吸收法(TCAP),研究了这两种方法作为小型装置水除氚系统回收氚的潜在后端技术。对GC和TCAP进行了严格的评估,以确定它们对水分解装置冷冻精馏塔底部回收的DT流的最终净化的适用性。两种方案(气相色谱和带反柱的TCAP)均表现出安全可行的运行模式,技术水平较高;此外,这两种工艺都符合拟议应用程序所需的主要设计规范。然而,使用气相色谱是首选的,因为该系统可以在适度的温度循环下运行,并产生纯度更高的流(D2和T2)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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