Influences of Oxide Additions on Formation Reaction of Iron Carbide at 1023K
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概要
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The iron carbide was produced by reacting of iron ore fines with 70%H2–30%CH4 gas mixture at 1023 K. The effects of 1 to 5 mass% MnO, Cr2O3, TiO2 and V2O5 additives on iron carbide formation were experimentally investigated by gravimetric measurement. Phases formed during the reaction of iron carbide formation with and without oxide addition were examined by XRD, Mossbauer, and EDX analyses. The change of iron, iron oxides, and iron carbide compositions during reaction were quantitatively determined for samples added 1 mass% V2O5 and without oxide addition. The addition of Cr2O3 and MnO has no significant effect on the iron carbide formation. The TiO2 addition retards both reduction of iron ore and iron carburization processes. Only 1 mass% V2O5 addition can enhance both reduction of iron ore and iron carburization reaction. The V2O5 addition also increases the conversion yields from iron ore to iron carbide to 96% The promotion of reduction and carburization by the addition of V2O5 may be caused by the enhancement of catalytic effect of reduced metallic iron on methane cracking which can enhance both iron ore reduction and carburization.
- 2006-07-15
著者
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Tsukihashi Fumitaka
Department Of Advanced Materials Graduate School Of Frontier Science The University Of Tokyo
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Li Guangqiang
Key Laboratory Of Ferrous Metallurgy And Resources Utilization Ministry Of Education China (wuhan Un
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Tsukihashi Fumitaka
Department Of Advanced Materials Science Graduate School Of Frontier Sciences The University Of Toky
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MA Jianghua
Key Laboratory of Ferrous Metallurgy and Resources Utilization, Ministry of Education, China (Wuhan
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NI Hongwei
Key Laboratory of Ferrous Metallurgy and Resources Utilization, Ministry of Education, China (Wuhan
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SHEN Qiaozhen
Key Laboratory of Ferrous Metallurgy and Resources Utilization, Ministry of Education, China (Wuhan
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Shen Qiaozhen
Key Laboratory Of Ferrous Metallurgy And Resources Utilization Ministry Of Education China (wuhan Un
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Ni Hongwei
Key Laboratory Of Ferrous Metallurgy And Resources Utilization Ministry Of Education China (wuhan Un
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Ma Jianghua
Key Laboratory Of Ferrous Metallurgy And Resources Utilization Ministry Of Education China (wuhan Un
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Li Guangqiang
Key Laboratory For Ferrous Metallurgy And Resources Utilization Of Ministry Of Education Wuhan Unive
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Tsukihashi Fumitaka
Department Of Advanced Material Science The University Of Tokyo
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