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Needle-array to Plate DBD Plasma Using Sine AC and Nanosecond Pulse Excitations for Purpose of Improving Indoor Air Quality

机译:使用正弦交流电和纳秒脉冲激励针阵列镀DBD等离子体以改善室内空气质量

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摘要

In this study, needle-array to plate electrode configuration was employed to generate an atmospheric air diffuse discharge using both nanosecond pulse and sine AC voltage as excitation voltage for the purpose of improving indoor air quality. Different types of voltage sources and electrode configurations are employed to optimize electrical field distribution and improve discharge stability. Discharge images, electrical characteristics, optical emission spectra, and plasma gas temperatures in both sine AC discharge and nanosecond pulse discharge were compared and the discharge stability during long operating time were discussed. Compared with the discharge excited by sine AC voltage, the nanosecond pulsed discharge is more homogenous and stable, besides, the plasma gas temperature of nanosecond pulse discharge is much lower. Using packed-bed structure, where γ- Al2O3 pellets are filled in the electrode gap, has obvious efficacy in the production of homogenous discharge. Furthermore, both sine AC discharge and nanosecond pulse discharge were used for removing formaldehyde from flowing air. It shows that nanosecond pulse discharge has a significant advantage in energy cost. And the main physiochemical processes for the generation of active species and the degradation of formaldehyde were discussed.
机译:在这项研究中,采用针阵列到板电极的配置,以纳秒级脉冲和正弦AC电压为激发电压来产生大气扩散扩散,以改善室内空气质量。采用不同类型的电压源和电极配置来优化电场分布并提高放电稳定性。比较了正弦AC放电和纳秒脉冲放电中的放电图像,电学特性,光学发射光谱和等离子气体温度,并讨论了长时间工作时的放电稳定性。与正弦交流电压激发的放电相比,纳秒脉冲放电更加均匀和稳定,此外,纳秒脉冲放电的等离子体气体温度要低得多。使用填充床结构,其中γ-Al2O3颗粒填充在电极间隙中,在产生均匀放电方面具有明显的功效。此外,正弦交流放电和纳秒脉冲放电均用于从流动的空气中去除甲醛。这表明纳秒脉冲放电在能源成本上具有显着的优势。并讨论了活性物质产生和甲醛降解的主要理化过程。

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