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Study on SO_2 Removal Efficiency by Nanosecond Rising Edge Pulse DBD Under Different Environmental Conditions 被引量:1

Study on SO_2 Removal Efficiency by Nanosecond Rising Edge Pulse DBD Under Different Environmental Conditions
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摘要 In this paper, an experimental study on SO2 removal by nanosecond rising edge pulse dielectric barrier discharge (DBD) plasma, generated by multi-needle-to-plane electrodes, is carried out. The mechanism of the effect of various factors, such as gap size between dielectric barrier and discharge needles, environmental humidity, and inlet speed of gas flow upon the removal efficiency of air purification is analyzed. The studies show that SOs removal efficiency improves with the increase in the gap size between dielectric barrier and discharge needles in the case of a fixed space between two electrodes, and also improves with the increase in the environmental humidity. For a mixed gas with a fixed concentration, there is an optimal inlet speed of gas flow, which leads to the best removal efficiency. In this paper, an experimental study on SO2 removal by nanosecond rising edge pulse dielectric barrier discharge (DBD) plasma, generated by multi-needle-to-plane electrodes, is carried out. The mechanism of the effect of various factors, such as gap size between dielectric barrier and discharge needles, environmental humidity, and inlet speed of gas flow upon the removal efficiency of air purification is analyzed. The studies show that SOs removal efficiency improves with the increase in the gap size between dielectric barrier and discharge needles in the case of a fixed space between two electrodes, and also improves with the increase in the environmental humidity. For a mixed gas with a fixed concentration, there is an optimal inlet speed of gas flow, which leads to the best removal efficiency.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2007年第6期728-731,共4页 等离子体科学和技术(英文版)
基金 the National Science Foundation for Distinguished Young Scholars of China (No.50525722) the Science and Technology research key project of MOE
关键词 SO2 removal efficiency DBD influence factors SO2, removal efficiency, DBD, influence factors
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参考文献7

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