Isothermal and non-isothermal CO2 gasification kinetics of charging coke and raceway coke used in a blast furnace

被引:0
|
作者
Chong Zou
Siqi Li
Hao Wu
Yuan She
Mengmeng Ren
Weian Wang
Ruimeng Shi
机构
[1] Xi’an University of Architecture and Technology,School of Metallurgical Engineering
关键词
Blast furnace; Coke; Raceway; Gasification reactivity; Activation energy;
D O I
暂无
中图分类号
学科分类号
摘要
The composition and microstructure of charging coke and raceway coke (R-coke) of a blast furnace were studied by various detection methods. The gasification reactivity and reaction activation energy of the two samples were compared by thermogravimetric method under non isothermal and isothermal conditions. The results show that the R-coke level spacing d002 is slightly smaller than that of the coke, and the graphite layer accumulation height Lc and graphite layer size are significantly higher than that of the coke. The coke undergoes chemical erosion and physical wear in the blast furnace with microscopic pore development and increased surface structural irregularity. The high overlap of alkali metal K and Na with Si and Al elemental distribution positions on the surface of R-coke indicates the generation of complex compounds. In the non-isothermal gasification process, the rate-controlling of the gasification process gradually shifts from chemical reaction to diffusion as the conversion of the sample increases. Diffusion becomes the only limiting link of the reaction during isothermal gasification, and the pore structure is the main factor affecting the gasification rate. Since the pore structure of R-coke is more developed than that of coke, the activation energy of the reaction is lower, which is conducive to the diffusion of CO2 molecules to the reaction interface and the diffusion of the product CO to distant places, thus making the reaction rate of R-coke higher than that of coke.
引用
收藏
页码:14437 / 14448
页数:11
相关论文
共 50 条
  • [41] Non-isothermal study of gasification process of coal char and biomass char in CO2 condition
    Xu, Tao
    Wang, Guang-wei
    Zhang, Jian-liang
    Song, Teng-fei
    Xu, Run-sheng
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2017, 24 (10) : 985 - 990
  • [42] Electric arc furnace dust non-isothermal reduction kinetics
    张传福
    彭兵
    彭及
    Transactions of Nonferrous Metals Society of China, 2000, (04) : 524 - 530
  • [43] Electric arc furnace dust non-isothermal reduction kinetics
    Zhang, CF
    Peng, B
    Peng, J
    Lobel, J
    Janusz, AK
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2000, 10 (04) : 524 - 530
  • [44] Non-isothermal study of gasification process of coal char and biomass char in CO2 condition
    Tao Xu
    Guang-wei Wang
    Jian-liang Zhang
    Teng-fei Song
    Run-sheng Xu
    Journal of Iron and Steel Research(International), 2017, 24 (10) : 985 - 990
  • [45] Non-isothermal study of gasification process of coal char and biomass char in CO2 condition
    Tao Xu
    Guang-wei Wang
    Jian-liang Zhang
    Teng-fei Song
    Run-sheng Xu
    Journal of Iron and Steel Research International, 2017, 24 : 985 - 990
  • [46] Non-isothermal kinetics of epoxy resin curing reaction under compressed CO2
    Jiaxun Lyu
    Dongdong Hu
    Tao Liu
    Ling Zhao
    Journal of Thermal Analysis and Calorimetry, 2018, 131 : 1499 - 1507
  • [47] Non-isothermal kinetics of epoxy resin curing reaction under compressed CO2
    Lyu, Jiaxun
    Hu, Dongdong
    Liu, Tao
    Zhao, Ling
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2018, 131 (02) : 1499 - 1507
  • [48] Isothermal kinetics of char-coal gasification with pure CO2
    Veca, Elisabetta
    Adrover, Alessandra
    FUEL, 2014, 123 : 151 - 157
  • [49] Kinetics of CO2/Coal Gasification in Molten Blast Furnace Slag
    Li, Peng
    Yu, Qingbo
    Qin, Qin
    Lei, Wei
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2012, 51 (49) : 15872 - 15883
  • [50] Behaviors and kinetics of non-isothermal gasification reaction of cokes with different reactivity
    Yan, Ruijun
    Liu, Zhenggen
    Chu, Mansheng
    Liu, Peijun
    METALLURGICAL RESEARCH & TECHNOLOGY, 2022, 119 (06)