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Optical emission spectroscopy diagnostics of DBD plasma with particles in a two-dimensional spouted bed

机译:二维喷射床中的颗粒的DBD等离子体的光发射光谱诊断

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To gain an insight into the effect of fluidization behavior of particles on the characteristic of plasma in a plasma-enhanced spouted bed, we investigated the changes of plasma optical emission spectroscopy (OES) with fluidized particles in this paper. Fluidization experiments under the irradiation of a dielectric barrier discharge (DBD) plasma generator were performed in a two-dimensional spouted bed. Essential operation parameters, such as particle type, applied voltage, gas velocity, and particle number were changed. The pressure drop of particles, emission intensity (El) of plasma, and high-speed camera images of plasma pattern were measured. As the results, the fluidization behavior of particles had been changed by the plasma irradiation, especially for polypropylene (PP) particles. The emission spectra of argon (Ar) plasma had been changed significantly with particles. The emission intensities of the Ar I transition lines were increased, and Ar II lines were decreased with PP particles compared to the case of no particle. The emission intensity of Ar I lines was enhanced with the applied voltage regardless of the addition of particles. The emission intensity changed with a gas velocity versus particle numbers was identified with the fluidization behavior, that emission intensity was increased at first and then decreased. The gas velocities corresponded to the highest value of emission intensity with various particle number were similar to the trend of the changes of minimum spouted velocity. The electrical conductivity and color of particles may affect the difference of pressure drop and detected emission intensity for two kinds of particles. Our research extends the knowledge of the relationship between fluidization behavior and plasma optical characteristic. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了深入了解颗粒在等离子体增强的喷射床中血浆的特性流化行为对血浆特征的影响,我们在本文中研究了与流化颗粒的血浆光发射光谱(OES)的变化。在二维喷射床中进行介电阻挡放电(DBD)等离子体发生器的照射下的流化实验。改变基本操作参数,例如粒子类型,施加的电压,气体速度和粒子数。测量粒子的压降,等离子体的排放强度(EL)和等离子体图案的高速相机图像。结果,粒子的流化行为已经通过等离子体照射而改变,特别是对于聚丙烯(PP)颗粒。氩气(AR)血浆的发射光谱与颗粒有显着变化。与无颗粒的情况相比,增加了Ar I过渡线的发射强度,并且通过PP颗粒降低了Ar II线。无论添加颗粒如何,都会通过施加的电压增强AR I线的发射强度。利用流化行为鉴定了具有气体速度与颗粒数而改变的发射强度,发射强度首先增加,然后减少。与各种粒子数相对应的气体速度与各种粒子数的最高值类似于最小喷射速度的变化的趋势。颗粒的电导率和颜色可能影响压力下降和检测到两种颗粒的发射强度的差异。我们的研究扩展了流化行为和等离子体光学特性之间关系的知识。 (c)2019年elestvier有限公司保留所有权利。

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