{"title":"Effective Binary Diffusivity of Silica and Viscosity of Silicomanganese Slag in the Smelting of Comilog and Wessels Ores","authors":"O. Ostrovski","doi":"10.2139/ssrn.3926105","DOIUrl":null,"url":null,"abstract":"Reduction of manganese and silicon oxides in smelting of silicomanganese causes significant changes in slag composition and properties, increasing the slag viscosity and decreasing diffusivities of slag components. These changes can have a strong effect on the kinetics of reduction reactions. This paper analyses effective binary diffusivity of silica and slag viscosity in the process of smelting of silicomanganese from Comilog and Wessels ores. Compositions of slag and metal phases and slag viscosity were calculated using FACTSage Version 7.2 at 1450-1600 oC. Comilog ore contained high concentration of alumina while Wessels ore had lower concentrations of Al2O3 and MnO and higher concentrations of FeO and CaO in comparison with Comilog ore. Silica effective binary diffusivity and slag viscosity were related to the ratio of non-bridging oxygens per tetrahedrally coordinated cations (NBO/T), which decreased in the process of oxides reduction. Changes in the slag composition and NBO/T ratio caused increase in the slag viscosity and decrease in the effective binary diffusivity of silica in the smelting of Comilog ore by more than an order in magnitude. In the smelting of Wessels ore, slag viscosity increased and silica effective binary diffusivity decreased by approximately 5-fold","PeriodicalId":325178,"journal":{"name":"EngRN: Production Engineering (Topic)","volume":"97 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-09-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"EngRN: Production Engineering (Topic)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2139/ssrn.3926105","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Reduction of manganese and silicon oxides in smelting of silicomanganese causes significant changes in slag composition and properties, increasing the slag viscosity and decreasing diffusivities of slag components. These changes can have a strong effect on the kinetics of reduction reactions. This paper analyses effective binary diffusivity of silica and slag viscosity in the process of smelting of silicomanganese from Comilog and Wessels ores. Compositions of slag and metal phases and slag viscosity were calculated using FACTSage Version 7.2 at 1450-1600 oC. Comilog ore contained high concentration of alumina while Wessels ore had lower concentrations of Al2O3 and MnO and higher concentrations of FeO and CaO in comparison with Comilog ore. Silica effective binary diffusivity and slag viscosity were related to the ratio of non-bridging oxygens per tetrahedrally coordinated cations (NBO/T), which decreased in the process of oxides reduction. Changes in the slag composition and NBO/T ratio caused increase in the slag viscosity and decrease in the effective binary diffusivity of silica in the smelting of Comilog ore by more than an order in magnitude. In the smelting of Wessels ore, slag viscosity increased and silica effective binary diffusivity decreased by approximately 5-fold
硅锰冶炼过程中锰、硅氧化物的还原使炉渣组成和性能发生显著变化,炉渣粘度增大,炉渣组分扩散系数降低。这些变化对还原反应的动力学有很大的影响。本文分析了Comilog和Wessels矿石中硅锰冶炼过程中二氧化硅的有效二元扩散系数和炉渣粘度。使用FACTSage Version 7.2在1450-1600℃下计算炉渣和金属相的组成以及炉渣粘度。Comilog矿石的氧化铝浓度较高,而Wessels矿石的Al2O3和MnO浓度较低,FeO和CaO浓度较高。二氧化硅有效二元扩散率和炉渣粘度与非桥氧/四面体配位阳离子(NBO/T)比值有关,该比值在氧化物还原过程中减小。在Comilog矿石冶炼过程中,炉渣组成和NBO/T比的变化导致炉渣粘度升高,二氧化硅有效二元扩散系数降低一个数量级以上。在Wessels矿石冶炼过程中,炉渣粘度增大,二氧化硅有效二元扩散系数降低约5倍