熔渣(焊接)
碱性氧气炼钢
冶金
材料科学
原材料
相(物质)
扫描电子显微镜
气流
氧气
炼钢
分析化学(期刊)
化学工程
化学
热力学
复合材料
环境化学
物理
有机化学
工程类
作者
Zhanwei He,Mo Lan,Xiaojun Hu,Xue Xiang-xin,Kuo‐Chih Chou
标识
DOI:10.1002/srin.202100558
摘要
The BOF slag contains a lot of iron‐containing species and its efficient recovery is a difficult problem in metallurgy. Herein, the oxidation behavior of industrial BOF slag under air atmosphere is investigated to explore the optimal oxidation conditions for transforming nonmagnetic FeO into magnetic MgFe 2 O 4 , including oxidation temperature, oxidation time, and airflow rate. The raw slag and oxidized slags are analyzed using chemical analysis, X‐ray diffraction (XRD) analysis, scanning electron microscope (SEM)‐energy dispersive spectroscopy (EDS) analysis, and Factsage thermodynamic simulation. The results show that the formation of MgFe 2 O 4 phase is closely related to the oxidation temperature, oxidation time, and airflow rate. With the increase in temperature, the conversion rate of MgFe 2 O 4 increases, and reaches the maximum at 1050 °C. However, the conversion rate of MgFe 2 O 4 decreases and part of β‐C 2 S is converted to α‐C 2 S above 1050 °C. When the oxidation time and airflow rate increase, the conversion rate of MgFe 2 O 4 increases and reaches the maximum value at 100 min and 1.25 L min −1 , respectively. Correspondingly, the grade increased from 16.3% of the raw slag to 27.86% of the magnetic slag, an increase of 11.5%. This is a more convenient and effective method, which can not only bring economic benefits for relevant enterprises but also reduce environmental pollution.
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