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IMAGE/TABLE DETAILS
Study on the carbon reduction potential of blast furnace injection process using reformed coke oven gas
Chenggong CHANG, Haonan SONG, Feixia LEI, Zichen DI, Fangqin CHENG
CIESC Journal
DOI:
10.11949/0438-1157.20231163
Fe
C
Si
Mn
P
S
Cu
Ti
94.95
4.15
0.45
0.25
0.09
0.03
0.03
0.05
Table 2
Pig iron composition (%)
Other Images/Table from this Article
Table 1 Simulation results of hydrogen production by coke oven gas reforming (%)
Fig.1
Carbon accounting boundary of blast furnace in steel industry
Fig.2
Effect of reforming coke oven gas injection rate on theoretical coke ratio and direct reduction degree
Fig.3
Relationship between gas temperature and theoretical focal ratio/degree of direct reduction
Fig. 4
Coke ratio variation of rich hydrogen at injection rate and limit injection rate
Fig.5
Effect of hydrogen purity on composition and calorific value of blast furnace gas
Fig.6
Effect of hydrogen purity on carbon emission of hydrogen rich blast furnace