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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Pulsed sub-microsecond dielectric barrier discharge treatment of simulated glass manufacturing industry flue gas: removal of SO2 and NOx
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Pulsed sub-microsecond dielectric barrier discharge treatment of simulated glass manufacturing industry flue gas: removal of SO2 and NOx

机译:模拟玻璃制造业烟气的脉冲亚微秒介质阻挡放电处理:去除SO2和NOx

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摘要

Experiments were carried out to investigate the removal of SO2 and NOx from simulated glass manufacturing industry flue gas containing O-2, N-2, NO, NO2, CO2, SO2 and H2O using a sub-microsecond pulsed dielectric barrier discharge (DBD) at atmospheric pressure. Removal efficiencies of SO2 and NOx (NO + NO2) were achieved as a function of gas temperature for two specific energies and two initial NO, NO2 and SO2 concentrations. The higher SO2 and NOx removal efficiencies were achieved in a gas stream containing 163 ppm of SO2, 523 ppm of NO, 49 ppm of NO2, 14% of CO2, 8% of O-2, 16% of H2O and N-2 as balance. The experimental results were evaluated using the energy cost or W-value (eV/molecule removed). About 100% of SO2 and 36% of NOx were removed at a gas temperature of 100 degrees C with an energy cost of about 45 eV/molecule removed and 36 eV/molecule removed, respectively. These results indicate that DBD plasmas have the potential to remove SO2 and NOx from gas streams without additives.
机译:使用亚微秒脉冲介电势垒放电(DBD)进行了实验,以研究从模拟玻璃制造业烟道气中去除O2,N-2,NO,NO2,CO2,SO2和H2O的SO2和NOx的去除。气压。对于两种比能和两种初始NO,NO2和SO2浓度,SO2和NOx(NO + NO2)的去除效率是气体温度的函数。在包含163 ppm的SO2、523 ppm的NO,49 ppm的NO2、14%的CO2、8%的O-2、16%的H2O和N-2的气流中实现了更高的SO2和NOx去除效率平衡。使用能量成本或W值(eV /去除的分子)评估了实验结果。在100摄氏度的气体温度下,约100%的SO2和36%的NOx被去除,能源成本分别约为45 eV /分子和36 eV /分子。这些结果表明,DBD等离子体具有在不添加添加剂的情况下从气流中去除SO2和NOx的潜力。

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