期刊文献+

Reduction Behavior With CO Under Micro-Fluidized Bed Conditions 被引量:3

Reduction Behavior With CO Under Micro-Fluidized Bed Conditions
原文传递
导出
摘要 To process optimization and improve the degree of reduction, a two-step experiment was designed. The experiment was carried out in the micro-fluidized bed. The reactor in the micro-fluidized bed is operated as a differential reactor to ensure an equal temperature and residence time with the reactor volume. The experiment used Brazilian iron ore and reducing gas of CO. The operating temperature was 400 to 800 ℃ and the residence time was between 10 and 60 min. In correspondence with experiment, microscopic technique was applied too. The test shows that temperature and residence time of the pre-reduction stage have an important effect on the degree of reduction. By using two-step experiment, the maximum value of reduction degree increases by 44.1% compared with the maximum value of traditional reduction experiment. Microscopic analysis shows that the specific surface area, surface morphology and texture of reduced iron ore after pre-reduction stage have an important effect on the degree of final reduction too. To process optimization and improve the degree of reduction, a two-step experiment was designed. The experiment was carried out in the micro-fluidized bed. The reactor in the micro-fluidized bed is operated as a differential reactor to ensure an equal temperature and residence time with the reactor volume. The experiment used Brazilian iron ore and reducing gas of CO. The operating temperature was 400 to 800 ℃ and the residence time was between 10 and 60 min. In correspondence with experiment, microscopic technique was applied too. The test shows that temperature and residence time of the pre-reduction stage have an important effect on the degree of reduction. By using two-step experiment, the maximum value of reduction degree increases by 44.1% compared with the maximum value of traditional reduction experiment. Microscopic analysis shows that the specific surface area, surface morphology and texture of reduced iron ore after pre-reduction stage have an important effect on the degree of final reduction too.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2013年第2期8-13,共6页
基金 Item Sponsored by National Natural Science Foundation of China(50834007)
关键词 iron ore reduction two-step experiment specific suriace area MORPHOLOGY pre-reduction degree finalreduction degree iron ore reduction two-step experiment specific suriace area morphology pre-reduction degree finalreduction degree
  • 相关文献

参考文献6

  • 1Kumaran V. Kinetic Theory for a Vibro-Fluidized Bed [J].Rev Metall Cah Inf Tech, 1998, 364: 163.
  • 2Christoph Feilmayr, Albin Thumhofer, Franz Winter, et al. Reduction Behavior of Hematite to Magnetite Under Fluidized Bed Conditions [J].ISIJ Int, 2004, 44(7): 1125.
  • 3Habermann A, Winter F, Hofbauer H, et al. An Experimental Study on the Kinetics of Fluidized 'Bed Iron Ore RedUction [J]. ISIJ Int, 2000, 40(10): 935.
  • 4Thumhofer A, Schaehinger M, Winter F, et al. Iron Ore Re- duction in a Laboratory-Scale Fluidized Bed Reactor-Effect of Pre-Reduction on Final Reduction Degree [J].ISIJ Int, 2005, 45(2) : 151.
  • 5Gmbh V S. Analytical Instruction for Internal Use [M]. Linz: [s. n. ], 2003.
  • 6Eder N, Pawlik C, Schuster S, et al. Memory-Effekte Von Fei- neisenerzen Bei Hohen Drucken und Temperaturen [M]. Wien: [s. n. ], 2004 (in German).

同被引文献33

引证文献3

二级引证文献15

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