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鐵礦-生物質復合球團還原行為及還原動力學

Reduction behavior and reaction kinetics of iron ore-biomass composite pellets

  • 摘要: 通過分析生物質合成氣氣氛下,不同組分復合球團(添加和未添加生物質)的還原速率、還原度、表面微觀結構和失重變化規律.對球團中添加生物質的作用機理以及含生物質球團還原過程的限制性環節展開研究.添加生物質的復合球團表面結構比無生物質球團疏松,孔隙率高,有利于后續還原的熱質傳遞,增加產物還原度,降低反應活化能;復合球團的還原以收縮核方式進行,在1123~1323K溫度范圍內,界面化學反應是兩種球團還原反應的主要控速環節;添加生物質后,有利于界面化學反應的進行.使得球團的還原表觀活化能由95.448kJ·mol-1降低到68.131kJ·mol-1

     

    Abstract: The reduction reaction rate, reduction degree, surface microstructure and weight loss of composite pellets with different components under biomass syngas atmosphere were investigated to illustrate the effects of biomass addition in pellets on the reduction behavior and reaction kinetics. The porosity of pellets with the addition of biomass is higher than that without the addition of biomass, which is favorable to heat and mass transfer of the reduction process, increases the reduction degree of products and decreases the apparent activation energy of reaction. The reduction of pellets was carried out in the manner of a shrinking core model. In the range of 1123 to 1323 K, the rate-controlling mechanism of reduction for these two kinds of pellets is inteffacial chemical reaction. The addition of biomass in pellets can improve the inteffacial chemical reaction, and thus the apparent activation energy of reaction decreases from 95.448 kJ. mol-1 to 68.131 kJ. mol-1.

     

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