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Published in: Metallurgical and Materials Transactions B 1/2016

22-09-2015

Analysis on the Oversize Blast Furnace Desulfurization and a Sulfide Capacity Prediction Model Based on Congregated Electron Phase

Authors: Wang Zhenyang, Zhang Jianliang, An Gang, Liu Zhengjian, Cheng Zhengming, Huang Junjie, Zhang Jingwei

Published in: Metallurgical and Materials Transactions B | Issue 1/2016

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Abstract

Through analyzed and regressed the actual productive desulfurization data from the oversize blast furnace (5500 m3) in north China, the relationship between the sulfur distribution parameters and the slag composition in actual production situation was investigated. As the slag and hot metal phases have their own balance sulfur content or sulfur partial pressure in gas phase, respectively, the non-equilibrium of sulfur among gas, slag, and metal phases leads to the transmission and distribution of sulfur. Combined with sulfur transmission reactions between gas, slag and metal phases, C/CO pairs equilibrium, and Wagner model, the measured sulfide capacity can be acquired using sulfur distribution ratio, sulfur activity coefficient, and oxygen activity in hot metal. Based on the theory of congregated electron phase, a new sulfide capacity prediction model (CEPM) has been developed, which has a good liner relationship with the measured sulfide capacity. Thus, using the burden structure for BF, the ironmaking slag composition can be obtained simply and can be used to reliably predict the ironmaking slag desulfurization ability a few hours later after charging under a certain temperature by CEPM.

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Metadata
Title
Analysis on the Oversize Blast Furnace Desulfurization and a Sulfide Capacity Prediction Model Based on Congregated Electron Phase
Authors
Wang Zhenyang
Zhang Jianliang
An Gang
Liu Zhengjian
Cheng Zhengming
Huang Junjie
Zhang Jingwei
Publication date
22-09-2015
Publisher
Springer US
Published in
Metallurgical and Materials Transactions B / Issue 1/2016
Print ISSN: 1073-5615
Electronic ISSN: 1543-1916
DOI
https://doi.org/10.1007/s11663-015-0462-3

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