The effect of air on oxidation decomposition of uranium-containing cationic exchange resins in Li2CO3-Na2CO3-K2CO3 molten-salt system

被引:3
作者
Zhang, Zhi [1 ,2 ]
Xue, Yun [1 ]
Yan, Yong-De [1 ]
Li, Guo-Qiang [2 ]
Xu, Wen-Da [3 ]
Ma, Fu-Qiu [1 ]
Liu, Xin [1 ]
Zhang, Qing-Guo [1 ]
机构
[1] Harbin Engn Univ, Harbin 150001, Heilongjiang, Peoples R China
[2] China Inst Radiat Protect, Taiyuan 030006, Shanxi, Peoples R China
[3] Yantai Stand Metrol Inspect & Test Ctr, Natl Steam Flowrate Measurement Stn, Yantai 264000, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
METALLIC IMPURITIES; SOLID-STATE; X-RAY; SULFUR; PYROLYSIS; WASTE; KINETICS; TRANSFORMATION; SPECTROSCOPY; SOLUBILITIES;
D O I
10.1039/d3ra02723f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
With the development of nuclear energy, spent cationic exchange resins after purification of radioactive wastewater must be treated. Molten-salt oxidation (MSO) can minimize the disposal content of resins and capture SO2. In this work, the decomposition of uranium-containing resins in carbonate molten salt in N-2 and air atmospheres was investigated. Compared to N-2 atmosphere, the content of SO2 released from the decomposition of resins was relatively low at 386-454 degrees C in an air atmosphere. The SEM morphology indicated that the presence of air facilitated the decomposition of the resin cross-linked structure. The decomposition efficiency of resins in an air atmosphere was 82.6% at 800 degrees C. The XRD analysis revealed that uranium compounds had the reaction paths of UO3 -> UO2.92 -> U3O8 and UO3 -> K2U2O7 -> K2UO4 in the carbonate melt, and sulfur elements in resins were fixed in the form of K3Na(SO4)(2). The XPS result illustrated that peroxide and superoxide ions accelerated the conversion of sulfone sulfur to thiophene sulfur and further oxidized to CO2 and SO2. Besides, the ion bond formed by uranyl ions on the sulfonic acid group was decomposed at high temperature. Finally, the decomposition of uranium-containing resins in the carbonate melt in an air atmosphere was explained. This study provided more theoretical guidance and technical support for the industrial treatment of uranium-containing resins.
引用
收藏
页码:18347 / 18362
页数:16
相关论文
共 56 条
  • [11] EFREMOVA KM, 1959, DOKL AKAD NAUK SSSR+, V124, P1057
  • [12] Study on a stable destruction method of radioactive waste ion exchange resins
    Eun, H. C.
    Yang, H. C.
    Cho, Y. Z.
    Lee, H. S.
    [J]. JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY, 2009, 281 (03) : 585 - 590
  • [13] Fan X., 1994, Energy Sci. Technol., V28, P348
  • [14] Metals recovering from waste printed circuit boards (WPCBs) using molten salts
    Flandinet, L.
    Tedjar, F.
    Ghetta, V.
    Fouletier, J.
    [J]. JOURNAL OF HAZARDOUS MATERIALS, 2012, 213 : 485 - 490
  • [15] A review of the high temperature oxidation of uranium oxides in molten salts and in the solid state to form alkali metal uranates, and their composition and properties
    Griffiths, TR
    Volkovich, VA
    [J]. JOURNAL OF NUCLEAR MATERIALS, 1999, 274 (03) : 229 - 251
  • [16] THE URANIUM-OXYGEN SYSTEM - UO2.5 TO U3O8
    HOEKSTRA, HR
    SIEGEL, S
    FUCHS, LH
    KATZ, JJ
    [J]. JOURNAL OF PHYSICAL CHEMISTRY, 1955, 59 (02) : 136 - 138
  • [17] Transformation of sulfur and nitrogen during Shenmu coal pyrolysis
    Hou, Jili
    Ma, Yue
    Li, Shuyuan
    Shi, Jian
    He, Lu
    Li, Jia
    [J]. FUEL, 2018, 231 : 134 - 144
  • [18] Treatment of solid wastes with molten salt oxidation
    Hsu, PC
    Foster, KG
    Ford, TD
    Wallman, PH
    Watkins, BE
    Pruneda, CO
    Adamson, MG
    [J]. WASTE MANAGEMENT, 2000, 20 (5-6) : 363 - 368
  • [19] The fate of sulfur during rapid pyrolysis of scrap tires
    Hu, Hongyun
    Fang, Yuan
    Liu, Huan
    Yu, Ren
    Luo, Guangqian
    Liu, Wenqiang
    Li, Aijun
    Yao, Hong
    [J]. CHEMOSPHERE, 2014, 97 : 102 - 107
  • [20] [黄来喜 Huang Laixi], 2004, [辐射防护, Radiation Protection], V24, P211