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Influence of initial iron ore particle size on CO2 gasification behavior and strength of ferro-coke 被引量:4
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作者 Run-sheng Xu Shu-liang Deng +4 位作者 Heng Zheng Wei Wang Ming-ming Song Wei Xu Fang-fang Wang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2020年第8期875-886,共12页
Highly reactive ferro-coke has been widely studied due to its contribution to the energy saving and emission reduction in blast furnace ironmaking. To optimize the coking process of ferro-coke and improve its metallur... Highly reactive ferro-coke has been widely studied due to its contribution to the energy saving and emission reduction in blast furnace ironmaking. To optimize the coking process of ferro-coke and improve its metallurgical properties, it is necessary to clarify the influence of initial iron ore on the strength, micro-morphology and CO2 gasification reaction behavior of formed ferro-coke. The effects of initial iron ore particle size (0.50–1.00, 0.25–0.50 and 0.074–0.125 mm) on the CO2 gasification reaction of ferro-coke were analyzed using thermo-analysis technique. In addition, the effects of initial iron ore particle size on the strength and morphology of ferro-coke were investigated by drum test, digital microscopy and scanning electron micro-scopy. The results show that iron reduced from iron ore has a great promotion effect on the CO2 gasification reaction of ferro-coke. The smaller the particle size of initial iron ore, the more intense the gasification reaction, and the lower the starting temperature for gasification reaction of ferro-coke. The results of kinetic calculation show that the apparent activation energy of ferro-coke decreases with the decreasing particle size of blended iron ore. The particle size of initial iron ore has a great impact on the strength of ferro-coke. The ferro-coke prepared by 0.25–0.50 mm iron ore presents the best strength in this experiment. 展开更多
关键词 Ferro-coke Iron ore Particle size STRENGTH gasification reaction
原文传递
Corrigendum to“Construction of macromolecular model for Ningdong coal and simulation of gasificationreaction”[Chinese J.Chem.Eng.87(2025)335-344]
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作者 Longge Zhang Xuelan Zhang +3 位作者 Ping Li Yiran Zhang Jiancheng Wang Xingjun Wang 《Chinese Journal of Chemical Engineering》 2026年第2期390-390,共1页
We regret that the article type of the above article should be Full Length Article.The correct and finalversion follows.We would like to apologise for any inconvenience caused.
关键词 ningdong coal gasification reaction macromolecular model
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