Determination of the Oxygen Content in the LiF-NaF-KF Melt

被引:3
|
作者
Maslennikova, Anna A. [1 ]
Mushnikov, Peter N. [1 ]
Dub, Alexey V. [2 ]
Tkacheva, Olga Yu [1 ]
Zaikov, Yury P. [1 ]
Liu, Ya-Lan [3 ]
Shi, Wei-Qun [3 ]
机构
[1] Russian Acad Sci, Inst High Temp Electrochem, Ural Branch, Academicheskaya Str, 20, Ekaterinburg 620990, Russia
[2] JSC Sci & Innovat, State Corp Rosatom, 32-2 Kadashevskaya Quay, Moscow 115035, Russia
[3] Chinese Acad Sci, Inst High Energy Phys, 19B Yuquan Rd, Beijing 100049, Peoples R China
关键词
LiF-NaF-KF; melt; voltammetry; method of reduction melting; FLUORIDE; CORROSION; FUSION; SOLUBILITY; REDUCTION; ALLOY; FUEL; CAO; MGO;
D O I
10.3390/ma16114197
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The present paper is dedicated to the quantitative determination of oxygen-containing impurities in the LiF-NaF-KF eutectic using electrochemical (cyclic and square-wave voltammetry) and reduction melting methods. The LiF-NaF-KF melt was analyzed before and after purifying electrolysis. The amount of oxygen-containing impurities removed from the salt during purification was determined. It was found that after electrolysis, the concentration of oxygen-containing impurities decreased by 7 times. The results obtained via electrochemical techniques and reduction melting were well-correlated, which made it possible to evaluate the quality of the LiF-NaF-KF F melt. To verify the analysis conditions, mechanical mixtures of LiF-NaF-KF containing Li2O were analyzed using the reduction melting method. The oxygen concentration in the mixtures varied from 0.672 to 2.554 wt. %. Based on the analysis results, the dependence approximated by the straight line was obtained. These data may be used to draw calibration curves and to further develop the procedure of oxygen analysis of fluoride melts.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Sacrificial effect of titanium powder on the corrosion by hydrogen fluoride in LiF-NaF-KF
    Yamazaki, Gaku
    Yagi, Juro
    Tanaka, Teruya
    Watanabe, Takashi
    Sagara, Akio
    FUSION ENGINEERING AND DESIGN, 2018, 136 : 394 - 397
  • [42] Speciation study of chromium corrosion product in molten LiF-NaF-KF salt
    Qiu Jie
    Zou Yang
    Yu Guo-Jun
    He Shang-Ming
    Liu Wen-Guan
    Jia Yan-Yan
    Li Zhi-Jun
    Xu Hong-Jie
    NUCLEAR SCIENCE AND TECHNIQUES, 2015, 26 (06)
  • [43] Electrochemical Behaviour of K2TiF6 at Liquid Metal Cathodes in the LiF-NaF-KF Eutectic Melt
    Jiao, Handong
    Wang, Junxiang
    Tian, Donghua
    Jiao, Shuqiang
    ELECTROCHEMISTRY, 2019, 87 (03) : 142 - 147
  • [44] Effect of metal fluorides on the corrosion of structural materials in molten LiF-NaF-KF
    Sankar, Krishna Moorthi
    Singh, Preet M.
    CORROSION SCIENCE, 2023, 213
  • [45] Speciation study of chromium corrosion product in molten LiF-NaF-KF salt
    邱杰
    邹杨
    俞国军
    何上明
    刘文冠
    贾彦彦
    李志军
    徐洪杰
    NuclearScienceandTechniques, 2015, 26 (06) : 127 - 130
  • [46] SHORT-LIVED SPECIES PRODUCED IN PULSE IRRADIATED MELTS OF LIF-KF AND LIF-NAF-KF EUTECTIC MIXTURES
    AKIYAMA, R
    KITAICHI, M
    FUJIWARA, T
    SAWAMURA, S
    JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, 1994, 31 (03) : 250 - 252
  • [47] Solubility of REM Fluorides and Oxides in a LiF–NaF–KF Melt
    P. N. Mushnikov
    A. E. Mushnikova
    Yu. P. Zaikov
    Russian Metallurgy (Metally), 2024, 2024 (1) : 171 - 176
  • [48] Electrochemical Behavior of Graphite Anode in LiF-NaF-KF Eutectic with YF3
    Tian, Lifang
    Huang, Wei
    Jiang, Feng
    Zheng, Haiyang
    Zhu, Tiejian
    She, Changfeng
    Wang, Xianbin
    Long, Dewu
    Gong, Yu
    Wu, Guozhong
    Li, Qingnuan
    ELECTROCHIMICA ACTA, 2017, 225 : 392 - 398
  • [49] Effect of oxide impurities on the corrosion behavior of structural materials in molten LiF-NaF-KF
    Sankar, Krishna Moorthi
    Singh, Preet M.
    CORROSION SCIENCE, 2022, 206
  • [50] Behavior characteristics of hydrogen and its isotope in molten salt of LiF-NaF-KF (FLiNaK)
    Zeng, Youshi
    Liu, Wenguan
    Liu, Wei
    Qian, Yuan
    Qian, Nan
    Wu, Xiaoling
    Huang, Yu
    Wu, Shengwei
    Wang, Guanghua
    NUCLEAR ENGINEERING AND TECHNOLOGY, 2019, 51 (02) : 490 - 494