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Counter permeation of deuterium and hydrogen through inconel 600

机译:通过600的Inconel对氘和氢的反渗透

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Permeation of hydrogen isotopes through a high-temperature alloy used for heat exchanger and reformer tubes is an important problem in the hydrogen production system connected to the High-Temperature Engineering Test Reactor (HTTR). An objective of this study is to investigate an effect of existence of hydrogen (H{sub}2) in a tube outside on the amount of permeated deuterium (D{sub}2) through the tube. It was found that the amount of permeated D{sub}2 decrease with increasing the partial pressure of H{sub}2 in the tube outside when the partial pressure of D{sub}2 in the tube is lower than 100 Pa and that of H{sub}2 in the tube outside is larger than 10 kPa. The amount of permeated D{sub}2 on counter permeation process was predicted quantitatively by using the effectiveness factor for diffusivity of deuterium in Inconel 600 and by taking into account of the equilibrium state for the hydrogen isotopes including HD molecules on the surface. From the results obtained in this study, it is supposed that the amount of tritium permeated from the primary circuit of the HTTR to the utilization system will be reduced by the existence of high pressure H{sub}2 in the steam reformer tube in the HTTR hydrogen production system.
机译:通过用于热交换器和重整管的高温合金渗透氢同位素是连接到高温工程测试反应器(HTTR)的氢气生产系统中的重要问题。本研究的目的是探讨在管中存在的氢气(H {亚} 2)的效果在外面的渗透氘(D {} 2)的量通过管。发现当管中的D {} 2的分压力低于100Pa的D {} 2的部分压力,随着管中的部分压力增加管中的H {亚} 2外部大于10kPa。通过使用Inconel 600中的氘的扩散性的效果因子以及考虑到包括表面上的HD分子的HD分子的氢同位素的平衡状态来定量地预测对渗透过程的渗透到渗透过程中的渗透量的量度。从本研究中获得的结果,假设HTTR中蒸汽重整管中的高压H {Sub} 2的存在,将从HTTR的主电路渗透到利用系统的初级回路的量氢气生产系统。

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