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Review of Recent Research on Coke Gasification in a Blast Furnace with Elevated Hydrogen Levels and Determination of the Coke's Postreactive Strength CSR. 1. Thermodynamic Analysis of Coke Gasification in the Presence of H2 and H2O
被引:0
|作者:
Golybev, O. V.
[1
]
Chernousov, P. I.
[1
]
Demidov, A. Yu.
[1
]
Slonov, M. V.
[1
]
机构:
[1] MISiS Natl Univ Sci & Technol, Moscow, Russia
关键词:
blast furnace;
blast additives;
thermodynamic analysis;
coke;
carbon gasification;
reduction;
iron oxides;
coupling reaction;
coke disintegration;
KINETIC BEHAVIORS;
METALLURGICAL COKE;
CO2;
D O I:
10.3103/S1068364X23600197
中图分类号:
TQ [化学工业];
学科分类号:
0817 ;
摘要:
Today, blast furnaces tend to operate with large quantities of injected materials-hydrogen sources. In the 1960s, the introduction of such additives prompted close attention to the chemical processes in the blast furnace. In the last few decades, many researchers have studied the reaction of coke with atmospheres containing H-2 and H2O. This sharp increase in interest may be attributed to the increasing presence of hydrogen in blast furnaces and to the availability of powerful methods such as X-ray phase analysis and electron microscopy and also software for digital image analysis and thermodynamic analysis. The thermodynamic laws and kinetics of blast furnace processes were studied. The results show that coke reacts with H2O more intensely and with greater intensity than it reacts with CO2. That affects the coke strength. Other research has addressed the influence of the H-2 and H2O content on the porosity of the coke and its disintegration. Recently, thermodynamic analysis of the gasification of carbon from coke in a CO2 + H2O atmosphere (solution loss reaction of coke) by various research groups shows that increase in the H2O content in the initial gas further stimulates gasification. Thermodynamic analysis of the reactions associated with the gasification of coke by CO2 and H2O and the reduction of iron oxides (the coupling reaction) indicates that higher hydrogen content in the gas may shift the gasification of carbon to lower temperatures.
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页码:603 / 612
页数:10
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