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Experimental Study on Macro-kinetics of Flue Gas Desulfurization using Pyrolusite Pulp by a Double Magnetic Stirred Reactor

机译:双磁搅拌反应器制备软锰矿浆烟气脱硫宏观动力学的实验研究

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It's a gas-liquid-solid three-phase reaction system in the reactor for flue gas desulfurization using pyrolusite pulp. Based on the two-film mass transfer theory and shrine core model, the macro-kinetics of flue gas desulfurization using pyrolusite pulp in a double magnetic stirred reactor were investigated. The effects of diffusion in solid film, surface chemical reaction, diffusion in liquid phase and gas phase of the process, have been carried out to distinguish the control step of the process. It was observed that SO_2 absorption efficiency increased with the decreasing of pyrolusite particle size and varied gently when the pyrolusite particle diameter decreased to 0.18mm. SO_2 absorption efficiency increased not significantly along with the increase of temperature and the liquid phase stirring speed but increased significantly along with the increase of the gas phase stirring speed. Experiment results showed that under simulated industrial conditions, gas phase diffusion was the control step compared to other related factors, given that pyrolusite particle diameter was kept below 0.1mm.
机译:这是反应器中的气-液-固三相反应系统,用于使用软锰矿纸浆进行烟道气脱硫。基于两膜传质理论和神sh核模型,研究了在双磁搅拌反应器中使用软锰矿浆对烟气脱硫的宏观动力学。已经进行了在固体膜中的扩散,表面化学反应,在液相和气相中的扩散的影响,以区分该工艺的控制步骤。可以看出,随着软锰矿粒径的减小,SO_2的吸收效率增加,而当软锰矿粒径减小到0.18mm时,SO_2的吸收效率变化很小。随着温度和液相搅拌速度的增加,SO_2的吸收效率没有明显增加,但是随着气相搅拌速度的增加,SO_2的吸收效率显着增加。实验结果表明,在模拟的工业条件下,假定软锰矿的粒径保持在0.1mm以下,气相扩散是其他相关因素的控制步骤。

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