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Modeling of corona discharge combined with Mn~(2+) catalysis for the removal of SO_2 from simulated flue gas

机译:电晕放电与Mn〜(2+)催化去除模拟烟气中SO_2的建模

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摘要

This study investigated a mass-transfer process of the removal of SO_2 from simulated flue gas by corona discharge combined with Mn~(2+)catalysis in wet reactor, including gas migration, liquid phase diffusion, and chemical reaction. The novelty formula of desulphurization efficiency and the flow rate of flue gas, discharge voltage, reaction enhancement factor, and the flow rate of water were established. It is reported that desulphurization efficiency remarkably increased with the increasing of enhancement factor and discharge voltage at 4000 mg m~(-3) of SO_2 and 0.05 m~3 s~(-1) of gas flow rate. However, the desulphurization efficiency had a slightly increase with the increasing of water flow rate. It is realizable that the energy consumption could be reduced to be lower than 0.3 kJ m~(-3), which was acceptable for industrial application. The experimental data were well in accord with the calculated results of theoretical model.
机译:本文研究了湿法反应器中电晕放电结合Mn〜(2+)催化从模拟烟气中去除SO_2的传质过程,包括气体迁移,液相扩散和化学反应。建立了脱硫效率,烟气流量,放电电压,反应增强因子和水流量的新颖公式。据报道,在4000 mg m〜(-3)SO_2和0.05 m〜3 s〜(-1)的气体流量下,脱硫效率随着增强因子和放电电压的增加而显着提高。但是,随着水流量的增加,脱硫效率略有提高。可以实现将能耗降低到低于0.3 kJ m〜(-3),为工业应用所接受。实验数据与理论模型的计算结果吻合良好。

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