用ZrCo-H2作为ITER吸氢剂材料吸/解吸循环的相似性研究

S. Yun, Y. Oh, Seungyon Cho, M. Chang, Hyun-goo Kang, K. Jung, K. Song, H. Chung, D. Koo, M. Glugla
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引用次数: 1

摘要

研究了ZrCo-H2体系的连续吸收/解吸循环,以模拟真实的ITER氢吸收剂系统。本研究采用ZrCo吸氢剂代替了近年来被认为是ITER吸氢剂的贫铀吸氢剂材料。在循环PCI测量中,高压Sievert装置似乎无法详细描述ZrCo-H2体系的平衡状态,特别是在解吸阶段。然而,这种高压压力-成分等温线(PCI)装置在呈现加氢/脱氢性能时,从前一种吸气状态到下一种状态表现出良好的因果关系。在ZrCo-H2系统或DU-H2系统的情况下,有多个吸气床电池,先前的吸气状态可能会产生类似的影响,并且可以显示出类似的方面,应该在ITER设计中进一步考虑,例如需要控制逻辑,从使用高压Sievert设备的PCI测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A similarity study on absorption/desorption cycles using ZrCo-H2 for ITER hydrogen getter material
Consecutive absorption/desorption cycles of the ZrCo-H2 system were studied to simulate the real ITER hydrogen getter system. ZrCo getter was used in this study instead of the depleted uranium (DU) getter material which was recently considered as the hydrogen getter in ITER. In a cyclic PCI measurement the high-pressure Sievert apparatus seems impractical to describe the equilibrium state of the ZrCo-H2 system in detail, especially for the desorption stage. This high-pressure Pressure-Composition Isotherm (PCI) apparatus, however, shows a cause-and-effect well, from the previous getter state to the following state in presenting hydriding/dehydriding performance. In case of the ZrCo-H2 system or in case of the DU-H2 system, having multiple getter bed battery, a similar affection by the previous getter status might be related and a similar aspect could be shown to should consider further in ITER design, for example a need for control logic, from PCI measurements using a high-pressure Sievert apparatus.
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