空气和水雾中体积扩散DBD的光电特性

Y. Gan, B. Chen, L. Wang, C. Zhu, W. Cai, X. X. Gao, J. Fei, X. He, Y. F. Jiang
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摘要

只提供摘要形式。放电等离子体的光电特性非常重要。建立了平行板阵列的体积漫射介质阻挡放电(DBD),并采用电学参数和发射光谱(OES)等方法对放电参数进行了诊断。结果表明,在空气和水雾中排放的氢氧自由基光谱具有相同的趋势,水雾中的氢氧自由基光谱比空气中的氢氧自由基光谱强。然而,在不同的放电电压和功率下,N2的量子产额能效比(EER)呈函数关系。在32.5kV ~ 34.5kV范围内,EER随放电电压的增大而增大,低于28.5kV时随放电电压的减小而减小。在细水雾中,放电电压低于30.5kV时,对EER无贡献。同时,空气中DBD放电电流波形的多次击穿和强度都比水雾中更为突出。当高压电源输入功率一定时,DBD电池在空气和水雾中的放电功率都随着放电电压的增加而增加。此外,DBD电池的等效电容、石英绝缘层和放电间隙与放电功率和电压有一定的关系。当放电电压一定(32.0kV)时,DBD电池与空气中放电间隙的等效电容随放电功率的增加保持相同的变化趋势,呈正弦曲线。随着放电功率的增大,绝缘层的等效电容先略有增大,后略有减小。此外,DBD电池的等效电容、绝缘层和水雾放电间隙可能分别保持不同的常数。本工作证明了体积漫射DBD的放电电压和功率的光电特性密切耦合,有助于体积漫射DBD的应用研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photoelectric characteristics of volume diffuse DBD in air and water mist
Summary form only given. Photoelectric characteristics are very important for discharge plasma. A volume diffuse dielectric barrier discharge (DBD) by means of parallel-plate arrays was established, and the methods including electrical parameter and optical emission spectroscopy (OES) were used to diagnose the discharge parameters. The results show that the spectra from discharge both in air and water mist have same trends, and the spectra of hydroxyl radical in water mist are stronger than those in air. However, the energy efficiency ratio (EER) of quantum yield of 337.1nm from N2 presents a functional relationship under different discharge voltage and power. The EER increased with increasing discharge voltage from 32.5kV to 34.5kV, and decreased with decreasing discharge voltage less than 28.5kV in air. It has not contribution for EER with discharge voltage under 30.5kV in water mist. Meanwhile, both the multiple breakdowns and intensity in the discharge current waveform from DBD in air are more prominent than those in water mist. When the input power of high voltage power source is a constant, the discharge power of DBD cell within both air and water mist increased with increasing discharge voltage. Moreover, the equivalent capacitances of the DBD cell, quartz insulating layers and discharge gaps have some relationships with discharge power and voltage. When the discharge voltage is a constant (32.0kV), the equivalent capacitances of both DBD cell and gaps with discharge in air maintained same trends and looked like sine curves with increasing discharge power. The equivalent capacitance of insulating layers slightly increased firstly and then slightly declined with increasing discharge power. Furthermore, the equivalent capacitances of DBD cell, insulating layers and gaps with discharge in water mist maintained as probably different constants, respectively. This work demonstrated the close coupling of the photoelectric characteristics of the discharge voltage and power of volume diffuse DBD, and thus is helpful in the study of the application of volume DBD.
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