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Law of Mass Action Based Kinetic Approach for the Modelling of Parallel Mass Transfer Limited Reactions: Application to Metallurgical Systems

机译:基于质量定律的动力学方法用于平行传质受限反应的建模:在冶金系统中的应用

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摘要

The objective of this paper was to present a new law of mass action based rate expression for mass transfer limited reversible reactions. A simple reaction model was derived for parallel oxidation of silicon, chromium and carbon under conditions relevant to the argon-oxygen decarburization (AOD) process. Our hypothesis is that when the forward rate coefficients approach infinite values, the composition at the reaction surface approaches a constrained equilibrium. In numerical analysis, however, only finite numbers are allowed and therefore only finite values are accepted for rate coefficients. In order to circumvent this problem, additional residual affinity constraints were introduced. This assures that the affinities of all the reactions at the reaction front reach a pre-defined non-zero residual affinity and the rate coefficients remain finite. The calculated equilibrium composition is essentially the same as that obtained with the equilibrium coefficient method. In the case of effective gas side mass transfer, the component having the highest mole fraction or the highest mass transfer rate on the liquid side consumes most of the oxygen. When the gas side mass transfer rate is decreased, the mass transfer rate of oxygen begins to limit the overall rate and the partial pressure of oxygen at the reaction interface decreases. Then, the role of inter-facial equilibrium becomes important as the species start to compete for the oxygen. The proposed method provides a transparent and direct solution of the mass transfer limited reaction rates and is thus suitable for process simulators and CFD software.
机译:本文的目的是为传质受限的可逆反应提供一种基于质量作用速率表达的新定律。推导了一个简单的反应模型,用于在与氩氧脱碳(AOD)工艺相关的条件下平行氧化硅,铬和碳。我们的假设是,当正向速率系数接近无限值时,反应表面的组成会达到约束平衡。但是,在数值分析中,仅允许使用有限数,因此速率系数仅接受有限值。为了避免这个问题,引入了附加的剩余亲和力约束。这确保了在反应前沿的所有反应的亲和力达到预定的非零残留亲和力,并且速率系数保持有限。计算出的平衡组成与用平衡系数方法获得的基本相同。在有效的气体侧传质的情况下,在液体侧上具有最高摩尔分数或最高传质速率的组分消耗了大部分氧气。当气体侧传质速率降低时,氧气的传质速率开始限制总速率,并且反应界面处的氧气分压降低。然后,随着物种开始竞争氧气,界面平衡的作用变得很重要。所提出的方法为传质受限的反应速率提供了一种透明,直接的解决方案,因此适用于过程模拟器和CFD软件。

著录项

  • 来源
    《ISIJ international》 |2016年第9期|1543-1552|共10页
  • 作者单位

    Department of Mechanical Engineering, Aalto University, P.O. Box 14400, 00076 Aalto, Finland;

    Process Metallurgy Research Unit, P.O. Box 4300, FI-90014 University of Oulu, Finland;

    Process Metallurgy Research Unit, P.O. Box 4300, FI-90014 University of Oulu, Finland;

    Process Metallurgy Research Unit, P.O. Box 4300, FI-90014 University of Oulu, Finland;

    Process Metallurgy Research Unit, P.O. Box 4300, FI-90014 University of Oulu, Finland;

    Department of Mechanical Engineering, Aalto University, P.O. Box 14400, 00076 Aalto, Finland;

    Process Metallurgy Research Unit, P.O. Box 4300, FI-90014 University of Oulu, Finland;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mass transfer limited parallel reactions; law of mass action; rate phenomena; residual affinity;

    机译:传质受限的平行反应;群众行动法则;速率现象;剩余亲和力;
  • 入库时间 2022-08-17 23:58:36

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