Application of sidestream recycle to the separation of hydrogen isotopes by cryogenic distillation

R. P. Sherman, D. J. Taylor, J. W. Barnes, T. Yamanishi, M. Enoeda, S. Konishi, Kiyoshi Okuno
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引用次数: 4

Abstract

Withdrawal of a sidestream from an isotopic separation distillation column followed by equilibration of species and reinjection is a technique for reducing the required number of columns and hence reducing tritium inventories in fusion-energy fuel processing systems. Measurements have been made with a single column and the three-component H/sub 2/-HD-D/sub 2/ system withdrawing streams of essentially pure H/sub 2/ and D/sub 2/. This was followed by single column measurements with the full HDT system and a column inventory of ca 16.8 moles (H/D/T=0.043/0.528/0.429). Rather pure T/sub 2/ (ca. 98.7 mol%) was produced as one of the products. This would previously have required two separate distillation columns with an inventory of ca. 16 moles of T/sub 2/ as compared with 7.2 moles of T/sub 2/ in these experiments. The dynamic response of the H-D system was followed using in situ laser Raman spectroscopy to obtain product compositions and column composition profiles.
侧流循环在低温精馏分离氢同位素中的应用
从同位素分离精馏塔提取侧流,然后进行物质平衡和再注入是一种减少所需塔数的技术,从而减少聚变能燃料处理系统中的氚库存。用单柱和三组分H/sub 2/-HD-D/sub 2/系统进行测量,提取基本纯的H/sub 2/和D/sub 2/流。随后进行了全HDT系统的单柱测量,柱存量约为16.8 mol (H/D/T=0.043/0.528/0.429)。其中一种产物得到了较纯的T/sub 2/(约98.7 mol%)。这在以前需要两个分离的精馏塔,大约有16摩尔的T/sub - 2/,而在这些实验中只有7.2摩尔的T/sub - 2/。利用原位激光拉曼光谱分析了H-D体系的动态响应,得到了产物组成和柱组成曲线。
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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