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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Experimental investigation on hydrogen adsorption performance of composite adsorbent in the tank with high vacuum multilayer insulation
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Experimental investigation on hydrogen adsorption performance of composite adsorbent in the tank with high vacuum multilayer insulation

机译:对具有高真空多层绝缘材料中复合吸附剂的氢吸附性能的实验研究

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摘要

Hydrogen is one of the main residual gases in the high vacuum multilayer insulated tank. H-2 adsorption performance of the composite adsorbent was investigated by using a test bench, an X-ray diffraction and a scanning electron microscopy. The composite adsorbent is composed of molecular sieve 5A and getter that includes the different proportion of PdO and Ag2O. The getter shall is laid as flat as possible when fed into the tank. Leakage and outgassing rate can be decreased by 64% after placing getter. The crystal phase structure of PdO and Ag2O in getter is unchanged by adsorption performance. Experimental results showed that the H-2 adsorption rate is high at the initial stage, and then it starts to become slow during a relatively long period. The type IV isotherms were obtained with these samples, and the H-2 adsorption principle is also discussed. The optimum percentage content of Ag2O in the getter is 22%. Under the allowed highest pressure, the composite adsorbent that includes 15% Ag2O, 85% PdO and molecular sieve 5A is preferentially used in the tank interlayer. The experimental results and performance analyses can be used in the design of the high vacuum multilayer insulated tank.
机译:氢是高真空多层绝缘水箱中的主要残留气体之一。通过使用测试台,X射线衍射和扫描电子显微镜研究了复合吸附剂的H-2吸附性能。复合吸附剂由分子筛5a和getter组成,其中包括PDO和AG2O的不同比例。喂入储罐时,盖特将尽可能平坦。放置GETTER后,泄漏和超出率可以降低64%。 Getter中PDO和AG2O的晶相结构没有吸附性能不变。实验结果表明,在初始阶段,H-2的吸附率很高,然后在相对较长的时间内开始变得慢。使用这些样品获得了IV型等温线,还讨论了H-2吸附原理。 GETTER中AG2O的最佳百分比含量为22%。在允许的最高压力下,包括15%AG2O,85%PDO和分子筛5A的复合吸附剂优先在储罐中层中使用。实验结果和性能分析可用于高真空多层绝缘水箱的设计。

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