The Kinetic Mechanism of the Thermal Decomposition Reaction of Small Particles of Limestone at Steelmaking Temperatures

被引:1
|
作者
Li, Chenxiao [1 ]
Zhang, Yun [1 ]
Xue, Yuekai [1 ]
Zhang, Kaixuan [1 ]
Wang, Shuhuan [1 ]
Sun, Huakang [1 ]
Xie, Huaqing [2 ]
机构
[1] North China Univ Sci & Technol, Met & Energy Coll, Tangshan 063210, Peoples R China
[2] Northeastern Univ, Sch Met, Shenyang 110819, Peoples R China
关键词
converter steelmaking; small-particle limestone; decomposition kinetics; carbon dioxide partial pressure; low carbon; DISSOLUTION; PHOSPHORUS; SLAG; CO2;
D O I
10.3390/pr11092712
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Converter blowing limestone powder making slag steelmaking process has the advantages of low carbon and high efficiency, and can realize the resource utilization of CO2 in the metallurgical process, which is in line with the development direction of green metallurgy. Based on a thermogravimetric-differential thermal analyzer, the kinetic mechanism of decomposition of small limestone at steelmaking temperatures was investigated by a modified double extrapolation method. The results showed that with a higher rate of heating, limestone decomposition lagged, and decomposition temperature increased. Furthermore, the smaller the limestone particle size, the lower the activation energy of decomposition. Compared with N2, air, and O2, small limestone powder used for converter blowing could complete more rapid decomposition, and the time required for decomposition shortened by about 1/3, although the decomposition temperature increased in the CO2. The limestone decomposition rate increased and then decreased at low to high CO2 partial pressures. With a limiting link, the inhibition was more significant under high CO2 partial pressure, but the reaction can be fully completed by 1000 & DEG;C. The decomposition type modeled was stochastic nucleation and subsequent growth. As the partial pressure of CO2 increased from 25% to 100%, the number of reaction stages, n, increased.
引用
收藏
页数:15
相关论文
共 50 条
  • [41] Detailed kinetic mechanism of thermal decomposition of furyl radicals: Theoretical insights
    Nguyen, Thi D. -T.
    Pham, Nhung
    Mai, Tam V. -T.
    Hoang Minh Nguyen
    Huynh, Lam K.
    FUEL, 2021, 288
  • [42] Theoretical and kinetic study of the thermal decomposition mechanism of long chain aldehydes
    Di Teodoro, Maristella
    Pelucchi, Matteo
    Cavallotti, Carlo
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2024, 40 (1-4)
  • [43] Study of the mechanism and kinetic parameters of the thermal decomposition of cobalt sulphate hexahydrate
    Straszko, J.
    Olszak-Humienik, M.
    Mozejko, J.
    2000, Kluwer Academic Publishers, Dordrecht, Netherlands (59)
  • [44] Study of The Mechanism and Kinetic Parameters of The Thermal Decomposition of Cobalt Sulphate Hexahydrate
    J. Straszko
    M. Olszak-Humienik
    J. Możejko
    Journal of Thermal Analysis and Calorimetry, 2000, 59 : 935 - 942
  • [45] Products, kinetic regularities, and mechanism of thermal decomposition of ethyl(methyl)dioxirane
    S. A. Grabovskiy
    E. A. Markov
    A. B. Ryzhkov
    N. N. Kabal’nova
    Russian Chemical Bulletin, 2006, 55 : 1780 - 1787
  • [46] Small Skeletal Kinetic Reaction Mechanism for Ethylene Air Combustion
    Zettervall, Nildas
    Fureby, Christer
    Nilsson, Elna J. K.
    ENERGY & FUELS, 2017, 31 (12) : 14138 - 14149
  • [47] Thermal decomposition of hydrophobic silica aerogels: kinetics and reaction mechanism
    Song He
    Zhiqi Li
    Yuansheng Ma
    Xinyu Liu
    Xin Jin
    Chunxiang He
    Chunhua Du
    Ping Li
    Dongmei Huang
    Journal of Thermal Analysis and Calorimetry, 2023, 148 : 13941 - 13957
  • [48] Study of thermal decomposition process and the reaction mechanism of the eucalyptus wood
    Sharma, Piyush
    Diwan, P. K.
    WOOD SCIENCE AND TECHNOLOGY, 2017, 51 (05) : 1081 - 1094
  • [49] Thermal decomposition of hydrophobic silica aerogels: kinetics and reaction mechanism
    He, Song
    Li, Zhiqi
    Ma, Yuansheng
    Liu, Xinyu
    Jin, Xin
    He, Chunxiang
    Du, Chunhua
    Li, Ping
    Huang, Dongmei
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2023, 148 (24) : 13941 - 13957
  • [50] Study of thermal decomposition process and the reaction mechanism of the eucalyptus wood
    Piyush Sharma
    P. K. Diwan
    Wood Science and Technology, 2017, 51 : 1081 - 1094