Gas release characteristics during carbonization of iron coke hot briquette and influence of heating rate

被引:0
作者
Zi-yu Wang
Dong Han
Zheng-gen Liu
Man-sheng Chu
Yong-jie Zhang
Li-feng Zhang
Ji-wei Bao
Ming-yu Wang
机构
[1] Northeastern University,School of Metallurgy
[2] Engineering Research Center of Frontier Technologies for Low-Carbon Steelmaking (Ministry of Education),undefined
[3] Liaoning Province Engineering Research Center for Technologies of Low-Carbon Steelmaking,undefined
来源
Journal of Iron and Steel Research International | 2023年 / 30卷
关键词
Iron coke hot briquette; Carbonization; Gas release characteristic; Heating rate; Kinetics;
D O I
暂无
中图分类号
学科分类号
摘要
The release characteristics of CH4, H2, CO and CO2 from iron coke hot briquette (ICHB) during carbonization were studied. The results show that compared with briquette without iron ore, Fe3O4 can inhibit the release rate of H2 and promote the production of CO and CO2. In addition, when the heating rate increases from 3 to 7 °C/min, the release rates of CH4 and H2 increase, while the release rates of CO and CO2 first increase and then decrease. The carbonization process of ICHB was segmented, and corresponding kinetic analysis was carried out. The results show that the activation energy of Stage II and Stage IV is higher in the carbonization process of ICHB, and the active pyrolysis of coal and the reduction of iron ore occur in these two stages. In addition, the effect of heating rate on the kinetic parameters of ICHB carbonization process was investigated. It was found that when the heating rate increased, the reaction activation energy of Stage IV decreased first and then increased, which was consistent with the release law of CO and CO2. The analysis showed that the increase in heating rate leads to more reactions at higher temperatures, resulting in an increase in the release rate of some gases. In addition, thermal hysteresis can also cause some processes to fail to fully react at the end of heating. It is also found that the apparent activation energy and preexponential factor have kinetic compensation effect during the carbonization of ICHB.
引用
收藏
页码:2163 / 2172
页数:9
相关论文
共 152 条
  • [1] Xing X(2017)Coal Processing and Comprehensive Utilization Fuel Process. Technol. 157 42-51
  • [2] Rogers H(2018)undefined Powder Technol. 328 318-328
  • [3] Zhang GQ(2018)undefined China Metallurgy 28 1-8
  • [4] Hockings K(2022)undefined Iron and Steel 57 30-38
  • [5] Zulli P(2005)undefined ISIJ Int. 45 1379-1385
  • [6] Deev A(2007)undefined ISIJ Int. 47 823-830
  • [7] Mathieson J(2019)undefined Steel Res. Int. 90 1800354-750
  • [8] Ostrovski O(2022)undefined J. Iron Steel Res. Int. 29 741-336
  • [9] Wang HT(2020)undefined Fuel 268 324-1936
  • [10] Zhao W(2019)undefined Metall. Mater. Trans. B 50 1929-1176