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Hydrogen and noble gas interactions with iron nano-flakes

机译:氢和稀有气体与铁纳米片的相互作用

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Exposure of pure iron nano-flakes to hydrogen generates a high heat evolution associated with hydrogen uptakes shown by flow-through microcalorimetry. A large part of the hydrogen was found to be irreversibly absorbed by the iron flakes at 220℃ and atmospheric pressure, but an increased desorption of hydrogen was achieved by noble gases, such as helium and argon. Thus the iron surfaces displayed strong affinity for hydrogen, but also, surprisingly, for the noble gases, which were found to be able to displace hydrogen from the iron surfaces. The uptake of hydrogen by the iron flakes was observed to reach 9 wt.% after exposure for 5 h, which may be of interest in hydrogen storage applications. Desorption with the help of argon may provide an acceptable method of hydrogen recovery.
机译:纯铁纳米薄片暴露于氢会产生大量热量,这与流通式微量量热法显示的氢吸收有关。发现在220℃和大气压下,大部分铁屑不可逆地吸收了氢,但是稀有气体(例如氦气和氩气)使氢的解吸增加。因此,铁表面显示出对氢的强亲和力,而且还出乎意料地对稀有气体具有亲和力,发现该惰性气体能够从铁表面置换氢。暴露5 h后,铁片吸收的氢达到9 wt。%,这在储氢应用中可能是有意义的。借助氩气解吸可以提供一种可接受的氢气回收方法。

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