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Particle removal performance of a two stage electrostatic precipitator with carbon based nonmetallic collection plates for oil mist

机译:用碳基非金属收集板进行两级静电除尘器的颗粒去除性能

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The electrostatic precipitator, one of the air pollution control devices, is widely applied in industrial fields due to the low differential pressure and high particle removal efficiency. However, the electrostatic precipitator use high voltage leading to the risk of unstable sparks and corrosion. As a solution to this challenge, two-stage electrostatic precipitators that separates the pre-charging and collection stages have been developed, but expensive anticorrosive metals are required. In this study, we developed a carbon based non-metal two stage electrostatic precipitator to investigate the particle removal performance for oil mist. Five types of collection modules were manufactured by varying the materials of the high voltage and ground electrodes, and the particle removal performance depending on the flow velocity, particle diameter, and applied voltage was evaluated for each collection module. For the present experiment, there was no significant difference in particle removal performance regardless of electrode material. We confirmed the average electric field strength for each electrode material through numerical analysis. As a result, the non-metal electrode also showed an electric field strength similar to that of the metal electrode. The experimental results corresponded to the electrostatic precipitation theory, the Deutsch equation and Cochet's theory, and showed the maximum removal efficiency of PM2.5 at 91.5% at 3 m/s, the fastest flow rate in this experiment. Carbon is lighter, cheaper, and more anticorrosive than general metals. Therefore, the characteristics of the carbon based non-metal electrostatic precipitator introduced in this study are expected to be applied to industrial post-treatment facilities.
机译:由于低差压和高颗粒去除效率,静电除尘器之一是空气污染控制装置之一,在工业领域广泛应用于工业领域。然而,静电除尘器使用高压导致风险不稳定的火花和腐蚀。作为这种挑战的解决方案,已经开发出分离充电预充电和收集阶段的两级静电除尘器,但需要昂贵的防腐金属。在这项研究中,我们开发了一种基于碳的非金属两级静电除尘器,以研究油雾的颗粒去除性能。通过改变高电压和接地电极的材料来制造五种类型的收集模块,并且针对每个收集模块评估了根据流速,粒径和施加电压的颗粒去除性能。对于本实验,无论电极材料如何,颗粒去除性能没有显着差异。我们通过数值分析确认了每个电极材料的平均电场强度。结果,非金属电极还显示出类似于金属电极的电场强度。实验结果对应于静电降水理论,德意曲方程和Cochet的理论,并显示PM2.5的最大去除效率为3m / s,在该实验中最快的流速。碳比一般金属更轻,更便宜,更便宜,更防腐。因此,预计本研究中介绍的碳基的非金属静电除尘器的特性将应用于工业后处理设施。

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