期刊文献+

Analysis of Gas Thermodynamic Utilization and Reaction Kinetic Mechanism in Shaft Furnace 被引量:3

Analysis of Gas Thermodynamic Utilization and Reaction Kinetic Mechanism in Shaft Furnace
原文传递
导出
摘要 The technology of coal gasification in shaft furnace is an effective way to develop direct reduction iron in China. In order to clarify the process of the reduction of oxidized pellets in shaft furnace by carbon monoxide or hydrogen in two ways, i.e. thermodynamics and kinetics, the gas utilization and reaction mechanism were studied by theoretical computations and isothermal thermogravimetric experiment. The results showed that the gas utilization increased with the rise of temperature when xH2/xco≥1 and with the increase of xco/(xH2 +xco) when temperature is less than 1073 K. The water-gas shift reaction restrains efficient utilization of gas, particularly in high tem- perature and hydrogen-rich gas. The gas utilization dropped with increase of carburization quantity of direct reduction iron (DRI) and oxygen potential of atmosphere. With the increase of both temperature and content of H2 in inlet gas, the reaction rate increased. At 100% Hz atmosphere, the interfacial chemical reaction is the dominant reaction re- stricted step. For the H2-CO mixture atmosphere, the reduction process is controlled by both interfacial chemical reaction and internal diffusion The technology of coal gasification in shaft furnace is an effective way to develop direct reduction iron in China. In order to clarify the process of the reduction of oxidized pellets in shaft furnace by carbon monoxide or hydrogen in two ways, i.e. thermodynamics and kinetics, the gas utilization and reaction mechanism were studied by theoretical computations and isothermal thermogravimetric experiment. The results showed that the gas utilization increased with the rise of temperature when xH2/xco≥1 and with the increase of xco/(xH2 +xco) when temperature is less than 1073 K. The water-gas shift reaction restrains efficient utilization of gas, particularly in high tem- perature and hydrogen-rich gas. The gas utilization dropped with increase of carburization quantity of direct reduction iron (DRI) and oxygen potential of atmosphere. With the increase of both temperature and content of H2 in inlet gas, the reaction rate increased. At 100% Hz atmosphere, the interfacial chemical reaction is the dominant reaction re- stricted step. For the H2-CO mixture atmosphere, the reduction process is controlled by both interfacial chemical reaction and internal diffusion
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2014年第1期16-23,共8页
基金 Item Sponsored by National Natural Science Foundation of China(51090384) Fundamental Research Funds for Central Universities of China(N110202001)
关键词 gas utilization oxidized pellet shaft furnace direct reduction KINETICS gas utilization oxidized pellet shaft furnace direct reduction kinetics
  • 相关文献

参考文献14

  • 1M. Selan, J. Lehrhofer, K. Friedrich, K. Kordesch, G. Simader , J. Power Sources 61 (1996) 247-253.
  • 2J. Kopfle, R. Hunter, Ironmak. Steelmak. 35 (2008) 254-259.
  • 3HYL Technologies Inc. , HYL III Status and Trends, Monterrey, Mexico, 2005.
  • 4Midrex Technologies Inc., 2005 World Direct Reduction Statistics, Charlotte, USA, 2006 .
  • 5J. G. Hu , in: Proceedings of the 5th International Congress on the Science and Technology of Ironmaking, CSM Press, Shanghai, 2009, pp. 1293-1296.
  • 6J. u. M. Y. Yu, G. F. Zhou , X. G. Bi, J. Wuhan Yejin Univ. Sci. Tech. 19 (1996) 282-288.
  • 7C. B. WU, J. Qin , Y. Gao, X. L. Cheng, T. H. Li, H. Pan, Journal of the Chinese Rare Earth Society 26 (2008) 243-246.
  • 8J. Fang, Theory and Technology of Noncoking Ironmaking , Metallurgical Industry Press, Beijing, 2007.
  • 9Z. Q. Lin, Iron and Steel 24 (1977) No.3, 89-95.
  • 10A. A. EL-Geassy, K. A. Shehata , S. Y. Ezz, Trans. lSI] 17 (1977) 629-635.

同被引文献44

引证文献3

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部