Permeation behaviour of hydrogen isotopes in molten FLiBe (2LiF-BeF2): Identifying sources of uncertainty and associated measurement challenges

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Hauptverfasser: Saraswat, Abhishek, Zhou, Weiyue, Kim, Nayoung, Cota, Jaron F., Zheng, Guiqiu, Khechfe, Alexander A., Barthel, Caroline S., Short, Michael P., Delaporte-Mathurin, Rémi, Woller, Kevin B.
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Veröffentlicht: 2026
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author Saraswat, Abhishek
Zhou, Weiyue
Kim, Nayoung
Cota, Jaron F.
Zheng, Guiqiu
Khechfe, Alexander A.
Barthel, Caroline S.
Short, Michael P.
Delaporte-Mathurin, Rémi
Woller, Kevin B.
author_facet Saraswat, Abhishek
Zhou, Weiyue
Kim, Nayoung
Cota, Jaron F.
Zheng, Guiqiu
Khechfe, Alexander A.
Barthel, Caroline S.
Short, Michael P.
Delaporte-Mathurin, Rémi
Woller, Kevin B.
contents This paper presents results from systematic investigations conducted in the HYPERION facility to quantify permeabilities of hydrogen isotopes in FLiBe over a temperature range of 773K - 973K. To address the knowledge gap resulting from widely scattered transport parameters reported in the earlier studies, HYPERION experiments incorporate specific provisions to probe unsubstantiated assumptions, including a one-dimensional permeation, membrane surface coverage by the salt, and ideal wettability of the salt-metal interface. Suppression of the isotopic transport behaviour for metal-side charging highlights the permeation barrier characteristics of a bubble-laden Ni-FLiBe interface, impacting permeability by up to 77%. This work attempts to resolve this issue via salt-side charging and informs constraints on the permeant charging methodology for future studies. The initial insights from HYPERION experiments call into question the design choices and estimated transport properties in earlier works. This study provides a plausible explanation for the observed scatter in H/D/T transport in FLiBe.
format Preprint
id arxiv_https___arxiv_org_abs_2603_28991
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Permeation behaviour of hydrogen isotopes in molten FLiBe (2LiF-BeF2): Identifying sources of uncertainty and associated measurement challenges
Saraswat, Abhishek
Zhou, Weiyue
Kim, Nayoung
Cota, Jaron F.
Zheng, Guiqiu
Khechfe, Alexander A.
Barthel, Caroline S.
Short, Michael P.
Delaporte-Mathurin, Rémi
Woller, Kevin B.
Plasma Physics
Materials Science
This paper presents results from systematic investigations conducted in the HYPERION facility to quantify permeabilities of hydrogen isotopes in FLiBe over a temperature range of 773K - 973K. To address the knowledge gap resulting from widely scattered transport parameters reported in the earlier studies, HYPERION experiments incorporate specific provisions to probe unsubstantiated assumptions, including a one-dimensional permeation, membrane surface coverage by the salt, and ideal wettability of the salt-metal interface. Suppression of the isotopic transport behaviour for metal-side charging highlights the permeation barrier characteristics of a bubble-laden Ni-FLiBe interface, impacting permeability by up to 77%. This work attempts to resolve this issue via salt-side charging and informs constraints on the permeant charging methodology for future studies. The initial insights from HYPERION experiments call into question the design choices and estimated transport properties in earlier works. This study provides a plausible explanation for the observed scatter in H/D/T transport in FLiBe.
title Permeation behaviour of hydrogen isotopes in molten FLiBe (2LiF-BeF2): Identifying sources of uncertainty and associated measurement challenges
topic Plasma Physics
Materials Science
url https://arxiv.org/abs/2603.28991