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Analysis of Fine Dust Removal Time Using Circular Hole Electrodes of Various Sizes by Corona Discharge

机译:电晕放电使用各种尺寸的圆孔电极分析微尘去除时间

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摘要

Corona discharge technology is used widely for air purification in laboratory experiments and industry. On the other hand, corona discharge technology has the disadvantage of requiring large-sized electrodes. Therefore, research is needed to reduce the size of the electrodes. In this study, circular hole aluminum electrodes and an air purifier system were designed to reduce the size of the electrodes. Several sets of power conversions were performed to generate a corona discharge. The system consisted of a half bridge inverter, step-up transformer, and Cockcroft Walton circuit. The range of input and output voltages was 30–70 V and 20–25 kV, respectively. A corona discharge was generated by the output voltage. The system could remove smoke in less time with a combination of 13 kHz and an electrode with a hole diameter of 0.2 cm than with the other combinations. The electrode hole diameter affected the removal time of species such as hydrogen carbon hydrogen oxygen (HCHO, formaldehyde), total volatile organic compounds (TVOC), and fine dust, which was confirmed by laboratory experiments. Mathematical derivation and experiments were carried out to prove the validity of the approach; the Clean Air Delivery Rate (CADR) index was 480 μm/m3.
机译:电晕放电技术广泛用于实验室实验和工业中的空气净化。另一方面,电晕放电技术具有需要大尺寸电极的缺点。因此,需要研究以减小电极的尺寸。在该研究中,设计圆孔铝电极和空气净化器系统以减小电极的尺寸。进行几组电力转换以产生电晕放电。该系统由半桥逆变器,升压变压器和Cockcroft Walton电路组成。输入和输出电压范围分别为30-70 V和20-25 kV。电晕放电由输出电压产生。系统可以在较少的时间内除去烟雾,其组合为13 kHz和孔径为0.2厘米的电极比其他组合为0.2厘米。电极孔直径影响物种如氢碳氢氧(Hcho,甲醛),总挥发性有机化合物(TVOC)和细粉尘的去除时间,由实验室实验证实。进行数学推导和实验,以证明该方法的有效性;清洁空气输送率(CADR)指数为480μm/ m3。

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