期刊文献+

CO还原氧化锌速率的研究 被引量:3

Research on the rate of zinc oxide reduction with CO
在线阅读 下载PDF
导出
摘要 电弧炉粉尘直接还原回收新工艺中 ,粉尘中的锌被还原挥发进入气相并于收尘系统中被氧化 ,分离出这部分含锌较高的物料可采用传统的方法回收锌 .而含锌物料中ZnO成分不断变化 .为探索其还原过程的规律 ,首先采用化学纯ZnO进行CO还原实验 ,研究还原过程的有关规律 ,这一还原反应也是其它冶金过程中常见的和十分重要的反应 .经实验研究发现 ,氧化锌还原速率与CO的浓度和温度有关 ,在还原温度为 910~ 12 0 0℃ ,CO浓度控制在15 %~ 10 0 % (体积分数 )范围的实验条件下 ,建立了还原过程的动力学方程 ,确定了条件恒温下还原过程的动力学参数表观活化能为 2 5 1.5 7kJ/mol,并与CO和CO2 的浓度以及反应产物锌蒸汽无关 ,CO还原氧化锌的过程为化学反应所控制 ,还原反应速度主要取决于还原温度 ,随着温度的升高 。 In the new process of direct recycling electric arc furnace (EAF) dust, the ZnO in the dust was reduced and evaporated, then oxidized in the system. The ZnO can be reduced and recovered in the traditional way after the materials of high ZnO content are separated and collected. But the zinc content in the materials changed from time to time in the recycling process. The experiments were carried out chemically pure ZnO and reducing agent CO to study the reduction mechanism of the process. And this reduction is important in other metallurgical processes. The reduction rate of ZnO with CO as reducing agent depends on the temperature and CO concentration. The kinetics study of the reduction process is conducted in the temperature range of 910~1 200 ℃, when the CO concentration constant values are between 15% and 100%. The kinetics equation was set up and the Arrhenius activation energy value was determined as 251.57 kJ/mol. The reaction of ZnO with CO is chemically controlled. The reaction rate would increase at high temperature, and was mainly controlled by the temperature condition.
出处 《中南工业大学学报》 CSCD 北大核心 2001年第2期189-191,共3页 Journal of Central South University of Technology(Natural Science)
关键词 化学动力学 氧化锌 一氧化碳 还原反应 回收 电弧炉粉尘 有价金属 chemical kinetics zinc oxide reduction process
  • 相关文献

参考文献4

  • 1彭兵,张传福,彭及.电弧炉炼钢粉尘的固化处理[J].中南工业大学学报,2000,31(2):124-126. 被引量:26
  • 2Lobel J,Ironmaking Steelmaking,2000年,27卷,1期,41页
  • 3Zhang Chuanfu,Transactions of Nonferrous Metals Societyof China,2000年,10卷,4期,524页
  • 4Lobel J,57th Electric Furnace Conference Proceedings,1999年,501页

共引文献25

同被引文献22

  • 1马保国,张莉,董荣珍,张平均,朱洪波,钟开红.锌盐对水泥水化历程的影响[J].建筑材料学报,2004,7(4):442-446. 被引量:9
  • 2乔秀臣,林宗寿,寇世聪,潘智生.重金属在废弃粉煤灰-水泥固化体系内的迁移[J].武汉理工大学学报,2005,27(10):11-14. 被引量:4
  • 3许亚华.电炉粉尘的处理和综合利用[J].钢铁,1996,31(6):66-69. 被引量:14
  • 4Yang X F,Chu M S,Shen F M. Mechanism of zinc damaging to blast furnace tuyere refractory[J].Acta Metall Sin Engl Lett,2009,(06):454.
  • 5Ibaraki T,Oda H. Dust recycling technology by the rotary hearth furnace at Nippon Steel's Kimitsu Works[J].Rev Métall Cah Inf Tech,2002,(10):809.
  • 6Shi J Y,Donskoi E,McElwain D L S. Modelling the reduction of an iron ore-coal composite pellet with conduction and convection in an axisymmetric temperature field[J].Mathematical and Computer Modelling,2005,(1/2):45.
  • 7Valipour M S,Motamed Hashemi M Y,Saboohi Y. Mathematical modeling of reaction in an iron ore pellet using a mixture of hydrogen,water vapor,carbon monoxide and carbon dioxide:an isothermal study[J].Advanced Powder Technology,2006,(03):277.
  • 8Coetsee T,Pistorius P C,de Villiers E E. Ratedetermining steps for reduction in magnetite-coal pellets[J].Minerals Engineering,2002,(11):919.
  • 9Haque R,Ray H S,Mukherjee A. Reduction of iron ore fines by coal char fines:development of a mathematical model[J].Scandinavian Journal of Metallurgy,1992,(02):78.
  • 10Rao Y K. The kinetics of reduction of hematite by carbon[J].Metallurgical and Materials Transactions,1971,(05):1439.

引证文献3

二级引证文献8

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