Control and Application of Ultrahigh Hydrogen Flux in Materials

This paper reviews the control and the application of ultrahigh hydrogen flux in materials for fusion reactors and future hydrogen societies. Ultrahigh hydrogen flux can be efficiently formed by the combination of hydrogen plasma exposure and the surface modification method, similar to super-permeat...

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Veröffentlicht in:Plasma and Fusion Research 2023/08/17, Vol.18, pp.2105073-2105073
Hauptverfasser: KOBAYASHI, Makoto I., HATANO, Yuji, HARA, Masanori, OYA, Yasuhisa, YAMAUCHI, Yuji, OTSUKA, Teppei, NAGASAKA, Takuya
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container_title Plasma and Fusion Research
container_volume 18
creator KOBAYASHI, Makoto I.
HATANO, Yuji
HARA, Masanori
OYA, Yasuhisa
YAMAUCHI, Yuji
OTSUKA, Teppei
NAGASAKA, Takuya
description This paper reviews the control and the application of ultrahigh hydrogen flux in materials for fusion reactors and future hydrogen societies. Ultrahigh hydrogen flux can be efficiently formed by the combination of hydrogen plasma exposure and the surface modification method, similar to super-permeation. The paper discusses the possibility of the fabrication of oversaturated hydrogen storage materials and the effective tritium removal from the components using the ultrahigh hydrogen flux.
doi_str_mv 10.1585/pfr.18.2105073
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subjects Fusion reactors
hydrogen
Hydrogen plasma
hydrogen storage
Hydrogen storage materials
super-permeation
Tritium
tritium decontamination
title Control and Application of Ultrahigh Hydrogen Flux in Materials
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