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A Study of the Consecutive Absorption/Desorption Cycles of ZrCo–H2 System

机译:ZrCo–H 2 系统连续吸收/解吸循环的研究

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Consecutive absorption/desorption cycles of the ZrCo–H system were studied to simulate the real International Thermonuclear Experimental Reactor (ITER) hydrogen getter system. A ZrCo getter was used in this paper instead of the depleted uranium (DU) getter material, which has been recently considered as the hydrogen getter in ITER. In a cyclic pressure-composition isotherm (PCI) measurement, the high-pressure Sievert apparatus seems impractical to describe the equilibrium state of the ZrCo–H system in detail, especially for the desorption stage. This high-pressure PCI apparatus, however, shows cause and effect well, from the previous getter state to the following state in presenting hydriding/dehydriding performance. In case of the ZrCo–H system or in case of the DU–H system having multiple getter bed battery, a similar affection by previous getter status might be related and a similar aspect could be shown to consider further ITER design; for example, a need for control logic from PCI measurements using a high-pressure Sievert apparatus.
机译:研究了ZrCo–H系统的连续吸收/解吸循环,以模拟真实的国际热核实验反应器(ITER)氢吸气剂系统。本文使用ZrCo吸气剂代替贫铀(DU)吸气剂材料,该材料最近在ITER中被视为氢吸气剂。在循环压力-等温等温线(PCI)测量中,高压Sievert装置似乎不可行,无法详细描述ZrCo–H系统的平衡状态,尤其是对于解吸阶段。然而,这种高压PCI设备在表现出加氢/脱水性能时,从先前的吸气剂状态到随后的状态很好地显示了因果关系。对于ZrCo-H系统或具有多个吸气床电池的DU-H系统,可能与以前的吸气剂状态有相似的影响,并且可能显示出相似的方面以考虑进一步的ITER设计。例如,需要使用高压Sievert装置进行PCI测量的控制逻辑。

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