Review

  • Journal of Nuclear Fuel Cycle and Waste Technology
  • Volume 23(1); 2025
  • Article

Technical Note

Journal of Nuclear Fuel Cycle and Waste Technology 2025;23(1):139-147. Published online: Mar, 30, 2025

The Role of Inert Atmospheres in Precision Analysis of Moisture in Molten Chloride Salts

  • Eun-Young Choi1,2,*, Seol Kim1,2, Seok Min Yoon1,2, Taeho Kim1,2, and Chang Hwa Lee1

    1Korea Atomic Energy Research Institute, 111, Daedeok-daero 989beon-gil, Yuseong-gu, Daejeon 34057, Republic of Korea,
    2University of Science and Technology, 217, Gajeong-ro, Yuseong-gu, Daejeon 34113, Republic of Korea
Abstract

The corrosivity of molten salt presents a major challenge for the commercialization of molten salt reactors, which utilize molten salt as both fuel and coolant. To protect structural materials of molten salt reactors, minimizing moisture—the primary source of corrosion—is crucial, necessitating precise moisture concentration measurements. This study examines the role of an inert gas atmosphere in analyzing moisture in molten chloride salts. Four chloride salts with different hygroscopic properties (NaCl, KCl, MgCl2 and ZnCl2) were tested. Each was analyzed in three states: as-received and dried by heating for 6 and 12 hours. Karl Fischer titration was employed to measure the moisture concentrations in salts under both air and an argon-filled glove box. Results showed consistently lower and more stable moisture concentrations in the inert atmosphere, highlighting the necessity of an argon environment for accurate moisture analysis in molten salts.

Keywords

Molten salt, Dehydration, Moisture concentration, Karl Fischer titration, Inert gas atmosphere