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Preliminary Experiments on Hydrogen Isotope Separation by Water-Hydrogen Chemical Exchange under Reduced Pressure

机译:减压水氢化学交换分离氢同位素的初步实验

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摘要

A pressure-reducing method is used effectively in a water distillation process to enhance the equilibrium separation factor. The feasibility of the technique is established through application to a water-hydrogen chemical exchange process using a prototype separation column. Isotope separation experiments examining the water-hydrogen chemical exchange reaction are performed for column pressures of 12-101 kPa, and the separation factors for hydrogen and deuterium are obtained. The HETP (Height Equivalent to a Theoretical Plate) values were distributed in the range of 6 to 15cm. By reducing the pressure in the column, the process temperature can be lowered without reducing the molar fraction of water vapor in the gas stream,. It confirmed that the separation factors under reduced pressure are larger than under atmospheric pressure. This fact demonstrates the effectiveness of reduced pressure in water-hydrogen chemical exchange processes.
机译:减压方法有效地用于水蒸馏过程中以提高平衡分离系数。该技术的可行性是通过使用原型分离柱应用于水-氢化学交换过程来确定的。在12-101 kPa的柱压下进行了同位素分离实验,研究了水-氢化学交换反应,并获得了氢和氘的分离因子。 HETP(等效于理论板的高度)值分布在6至15cm的范围内。通过降低塔中的压力,可以降低工艺温度而不降低气流中水蒸气的摩尔分数。可以确认,减压下的分离系数比大气压下的分离系数大。这一事实证明了在水-氢化学交换过程中减压的有效性。

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