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The reduction of iron oxides by volatiles in a rotary hearth furnace process: Part I. The role and kinetics of volatile reduction
I. Sohn
, R. J. Fruehan
Department of Materials Science and Engineering
Research output
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Contribution to journal
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Article
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peer-review
44
Citations (Scopus)
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Dive into the research topics of 'The reduction of iron oxides by volatiles in a rotary hearth furnace process: Part I. The role and kinetics of volatile reduction'. Together they form a unique fingerprint.
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Chemistry
Reduction
100%
Rate
33%
Chemical Kinetics Characteristics
33%
Nucleation
22%
Procedure
22%
Mixture
22%
Iron Oxide
22%
Diffusion
11%
Hydrogen
11%
Pellet
11%
Iron Ore
11%
Hearth
11%
Reaction Temperature
11%
Coal
11%
Furnace
11%
Biochemistry, Genetics and Molecular Biology
Reduction (Chemistry)
100%
Iron
33%
Kinetics
22%
Facilitated Diffusion
11%
Chemical Reaction Kinetics
11%
Growth
11%
Species
11%
Iron Ore
11%
Temperature
11%
Chemical Engineering
Diffusion
11%
Carbon
11%
Temperature
11%
Hydrogen
11%
Iron
11%
Ore Pellet
11%