Equilibrium interphase distribution of chromium depending upon stainless steel slag temperature and basicity

IF 0.8 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
A. A. Babenko, A. G. Upolovnikova, I. N. Kel’, R. R. Shartdinov
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Abstract

With the aim of studying the occurrence of chromium reduction during argon-oxygen refining using boron oxide as a flux, thermodynamic modelling of the equilibrium interfacial distribution of chromium between slag of the oxide system CaO–SiO2–(3–6%)B2O3–12%Cr2O3–3%Al2O3–8%MgO in the range of basicity 1.0–2.5 and metal depending on temperature, boron oxide content, and basicity is performed. Modelling results are shown as diagrams of the dependence of the equilibrium interphase distribution of chromium on slag composition at 1600 and 1700 °C. It is found that an increase in slag basicity from 1.0 to 2.5 at 1600 and 1700 °C leads in the range of boron oxide content studied to a decrease in the interfacial distribution coefficient of chromium from 60.0 · 10−3 to 1.5 · 10−3 and as a result an increase in the degree of chromium reduction from 91 to 99.5%. An increase in metal temperature and boron oxide content have little effect on chromium reduction. The influence of basicity of the slags studied on the chromium reduction process may be qualitatively explained from the perspective of phases formed within slags and thermodynamics of chromium reduction reactions with aluminum and silicon. Experimental studies confirm results of thermodynamic modeling.

Abstract Image

铬的平衡相间分布取决于不锈钢渣的温度和碱性
为了研究使用氧化硼作为助熔剂的氩氧精炼过程中铬还原的发生情况,对氧化物体系 CaO-SiO2-(3-6%)B2O3-12%Cr2O3-3%Al2O3-8%MgO 的熔渣之间铬的平衡界面分布进行了热力学建模,熔渣的碱度范围为 1.0-2.5,金属取决于温度、氧化硼含量和碱度。建模结果显示为 1600 和 1700 °C 时铬的平衡相间分布与炉渣成分的关系图。研究发现,在所研究的氧化硼含量范围内,炉渣碱度在 1600 和 1700 °C 时从 1.0 增加到 2.5,会导致铬的界面分布系数从 60.0 - 10-3 降低到 1.5 - 10-3,从而使铬的还原程度从 91% 增加到 99.5%。金属温度和氧化硼含量的增加对铬的还原几乎没有影响。所研究的炉渣碱性对铬还原过程的影响可以从炉渣中形成的相以及铬与铝和硅的还原反应热力学角度得到定性解释。实验研究证实了热力学模型的结果。
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来源期刊
Metallurgist
Metallurgist 工程技术-冶金工程
CiteScore
1.50
自引率
44.40%
发文量
151
审稿时长
4-8 weeks
期刊介绍: Metallurgist is the leading Russian journal in metallurgy. Publication started in 1956. Basic topics covered include: State of the art and development of enterprises in ferrous and nonferrous metallurgy and mining; Metallurgy of ferrous, nonferrous, rare, and precious metals; Metallurgical equipment; Automation and control; Protection of labor; Protection of the environment; Resources and energy saving; Quality and certification; History of metallurgy; Inventions (patents).
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