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Reaction Kinetics for a Novel Flue Gas Cleaning Technology

机译:新型烟气净化技术的反应动力学

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摘要

This paper studies the kinetics of the reaction between NaClO3, FeSO4, and NaHSO3, which can potentially be used as an alternative to the conventional lime-limestone process for flue gas desulfurization. The key for the establishment of a kinetic model of the reaction is to find a way to determine concentrations of reactants or products during the reaction. The generation rate of Cl- during the reaction was monitored using a Dionex Series 4000i ion chromatograph. Based on the changes of Cl- concentrations at the designed initial reaction conditions, reaction orders for each reactant were derived. The reaction orders were determined to be 1.1 for NaClO3, 1.1 for FeSO4, and 1.4 for NaHSO3. The global rate coefficients of the reaction at temperatures ranging from 40 to 80 °C were determined. Furthermore, the preexponential factor and the activation energy in the empirical Arrhenius form of the reaction were derived from the relationship between temperature and its corresponding observed global rate coefficient.
机译:本文研究了NaClO3,FeSO4和NaHSO3之间的反应动力学,这些动力学可以潜在地用作常规石灰-石灰石工艺烟气脱硫的替代方法。建立反应动力学模型的关键是找到一种确定反应过程中反应物或产物浓度的方法。使用Dionex Series 4000i离子色谱仪监测反应过程中Cl-的生成速率。根据在设计的初始反应条件下Cl-浓度的变化,得出每种反应物的反应顺序。确定的反应顺序为:NaClO3为1.1,FeSO4为1.1,NaHSO3为1.4。确定了在40至80°C的温度下反应的整体速率系数。此外,根据温度与相应的观测整体速率系数之间的关系,得出了经验的阿伦尼乌斯形式反应中的指数前因子和活化能。

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