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HYDROGEN ISOTOPE SEPARATION BY COMBINED ELECTROLYSIS CATALYTIC EXCHANGE UNDER REDUCED PRESSURE

机译:减压下组合电解催化交换分离氢同位素

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摘要

At the National Institute for Fusion Science experimental studies on hydrogen isotope separation by a Combined Electrolysis Catalytic Exchange (CECE) process have been carried out in order to apply it to the system of water detritiation for D-D burning experiments of the Large Helical Device. As an improvement of the CECE process, we have developed a reduced-pressure method as a means of enhancing the separation factor. The feasibility of this method is examined through application to a CECE process using a prototype separation column. Hydrogen-deuterium isotope separation experiments are performed in the two cases where column pressures are 12 and 101 kPa, and the separation factors for hydrogen and deuterium are obtained as 6.8 and 5.6, respectively. It is confirmed that the present method is applicable and useful to the CECE process. The values of Height Equivalent to a Theoretical Plate (HETP) are estimated by analyses with the equilibrium stage model The HETP values are 15 cm at 12 kPa and 13 cm at 101 kPa. The increase of superficial velocity with decreasing pressure may spoil the efficiency of the mass transfer.
机译:在美国国家融合科学研究院,已经进行了通过组合电解催化交换(CECE)分离氢同位素的实验研究,以便将其应用于大型螺旋装置D-D燃烧实验的水处理系统。作为CECE工艺的改进,我们开发了一种减压方法,以提高分离系数。通过使用原型分离柱应用于CECE工艺,检验了该方法的可行性。在柱压分别为12和101 kPa的两种情况下,进行了氢-氘同位素分离实验,氢和氘的分离系数分别为6.8和5.6。可以肯定的是,本方法适用于CECE过程。通过使用平衡阶段模型进行分析来估算等效于理论板的高度(HETP)的值。HETP值在12 kPa时为15 cm,在101 kPa时为13 cm。随着压力降低,表面速度的增加可能会破坏传质的效率。

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