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Viscosity Estimation of Multicomponent Slags of the CaO-SiO_2-Al_2O_3-Fe_xO System Based on Microstructure Analysis

机译:基于微结构分析的CaO-SiO_2-AL_2O_3-FE_XO系统多组分渣的粘度估计

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摘要

Slag viscosity is key factor of liquid steel refining and the smooth slag tapping of entrained flow coal gasifiers, and the accurate estimation of slag viscosity can provide a guidance for the selection of industrial raw material and the control of industrial process. In this study, a structure-related viscosity model about the multicomponent slags of the CaO-SiO2-Al2O3-FexO system is developed based on the flow mechanism of silicate melt to improve slag viscosity behavior. The present estimation model improved the expression of activation energy equation on the basis of the model proposed by Nakamoto and expanded the application from the ternary CaO-SiO2-Al2O3 system to the quaternary CaO-SiO2-Al2O3-FexO system. Then, the structural roles of all the components were clarified, and the types of oxygen bonds were defined by Raman spectroscopy. The fractions of various oxygen bonds were obtained, and the database of oxygen bonds in any composition within the range of experimental slags was generated by utilizing the Lagrange interpolation method. The result showed that the present model had an advantage in estimating slag viscosity within the compositional range of this experiment slag, and the mean deviations between the viscosities calculated by the present model and measured or published viscosities were within 20%. The model will offer a reference for the estimation and adjustment of slag behavior in the metallurgical slag or coal slag, especially for the iron-rich system.
机译:矿渣粘度是液体钢精制的关键因素,夹带的流动煤气化器的光滑炉渣攻丝,炉渣粘度的精确估计可以为选择工业原料和工业过程的控制提供指导。在该研究中,基于硅酸盐熔体的流动机理开发了关于CaO-SiO2-Al2O3-Fexo系统的多组分渣的结构相关的粘度模型,以改善渣粘度行为。本估计模型基于Nakamoto提出的模型改善了激活能量方程的表达,并将施用从三元CaO-SiO2-Al2O3系统扩展到季甲基-SiO2-Al2O3-Fexo系统。然后,阐明了所有组分的结构作用,并且通过拉曼光谱法定了氧键的类型。获得各种氧键的级分,通过利用拉格朗日插值法产生实验矿渣范围内的任何组成中的氧键数据库。结果表明,本模型在估计该实验渣的组成范围内的渣粘度,并且通过本模型计算的粘度与测量或公布粘度之间的平均偏差在20%以内。该模型将为冶金炉渣或煤渣中的矿渣行为的估计和调整提供参考,特别是对于富含铁的系统。

著录项

  • 来源
    《Energy & fuels》 |2020年第7期|8129-8138|共10页
  • 作者单位

    Northeastern Univ Key Lab Ecol Met Multimetall Ores Minist Educ Shenyang 110819 Peoples R China|Northeastern Univ Sch Met Shenyang 110819 Peoples R China;

    Northeastern Univ Key Lab Ecol Met Multimetall Ores Minist Educ Shenyang 110819 Peoples R China|Northeastern Univ Sch Met Shenyang 110819 Peoples R China|State Key Lab Met Mat Marine Equipment & Applicat Anshan 114021 Peoples R China;

    Northeastern Univ Key Lab Ecol Met Multimetall Ores Minist Educ Shenyang 110819 Peoples R China|Northeastern Univ Sch Met Shenyang 110819 Peoples R China;

    Northeastern Univ Key Lab Ecol Met Multimetall Ores Minist Educ Shenyang 110819 Peoples R China|Northeastern Univ Sch Met Shenyang 110819 Peoples R China;

    State Key Lab Met Mat Marine Equipment & Applicat Anshan 114021 Peoples R China;

    Northeastern Univ Key Lab Ecol Met Multimetall Ores Minist Educ Shenyang 110819 Peoples R China|Northeastern Univ Sch Met Shenyang 110819 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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