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Modeling of Ferric Sulfate Decomposition and Sulfation of Potassium Chloride During Grate-Firing of Biomass

机译:生物质炉排烧制过程中硫酸铁分解和氯化钾硫化的建模

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摘要

Ferric sulfate is used as an additive in biomass combustion to convert the released potassium chloride to the less harmful potassium sulfate. The decomposition of ferric sulfate is studied in a fast heating rate thermogravimetric analyzer and a volumetric reaction model is proposed to describe the process. The yields of sulfur oxides from ferric sulfate decomposition under boiler conditions are investigated experimentally, revealing a distribution of approximately 40% SO3 and 60% SI2- The ferric sulfate decomposition model is combined with a detailed kinetic model of gas-phase KCl sulfation and a model of K2SO4 condensation to simulate the sulfation of KCl by ferric sulfate addition. The simulation results show good agreements with experiments conducted in a biomass grate-firing reactor. The results indicate that the SO3 released from ferric sulfate decomposition is the main contributor to KCl sulfation and that the effectiveness of ferric sulfate addition is sensitive to the applied temperature conditions.
机译:硫酸铁用作生物质燃烧的添加剂,以将释放的氯化钾转化为危害较小的硫酸钾。在快速加热速率热重分析仪中研究了硫酸铁的分解,并提出了体积反应模型来描述该过程。实验研究了锅炉条件下硫酸铁分解产生的硫氧化物的产率,发现其分布约为40%SO3和60%SI2-。硫酸铁分解模型与气相KCl硫酸化的详细动力学模型和模型相结合K2SO4的缩合反应模拟添加硫酸铁时KCl的硫酸化。模拟结果表明与在生物质炉排燃烧反应器中进行的实验吻合良好。结果表明,硫酸铁分解释放的SO3是KCl硫酸盐化的主要贡献者,硫酸铁添加的有效性对所应用的温度条件敏感。

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