焦炭
高炉
等温过程
热重分析
反应后焦炭强度
石油焦
动力学
材料科学
活化能
化学工程
化学
冶金
热力学
物理化学
有机化学
物理
工程类
量子力学
作者
Minmin Sun,Jianliang Zhang,Kejiang Li,Ke Guo,Ziming Wang,Chunhe Jiang
标识
DOI:10.1007/s12613-019-1846-1
摘要
The gasification characteristics and gasification kinetics of coke in complex CO2/CO/H2/H2O/N2 systems similar to the gas system of industrial blast furnace (BF) were studied by the method of isothermal thermogravimetric analysis. The experimental gas compositions and the corresponding temperature were chosen according to data reported for industrial BFs. The gasification behavior of coke was described by the Random Pore Model (RPM), Volumetric Model (VM), and Grain Model (GM). Results showed that the gas composition of the coke gasification zone in BF changes slightly and that the temperature is the most important factor affecting coke gasification. The lower activation energy of coke samples (Coke Reaction Index (CRI) > 50) is due to the high Fe2O3 in the ash, lower degree of graphitization, and larger pore structure. In addition, the choice of kinetic model does not differ substantially in describing the gasification mechanism of coke in a BF.
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