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Energy Saving Effect of High Electric Field on an Electrostatic Precipitator for Air Borne Particle

机译:高电场节能效应静电粒子静电除尘器

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In this article, an electrostatic precipitators (ESP) with high electric field, which does not use corona discharge, was investigated. The ESP had a parallel plate configuration composed of a high voltage application plate electrode and grounded plate electrode with a gap of 5 mm. The electrode length was between 150 and 450 mm. The air was flowed at the gas velocity between 0.5 and 5 m/s in the ESP by a fan. A voltage up to 12.5 kV was applied to the high voltage application electrode, whereby the electric field intensity of 25 kV/cm was generated between the electrodes. The particle concentration in the air for the particle size between 0.3 and 5 μm was measured to calculate the collection efficiency. The collection efficiency in a conventional two-stage type ESP was also measured, and compared to the result in the ESP with high electric field. As a result, the collection efficiency at the electrode length of 450 mm was 77.6% at 12.5 kV, when the ratio of the input power was lower than 0.33 W/(m3/s), in the ESP with high electric field. On the other hand, the collection efficiency in the conventional ESP was 65.6% or 82.0% at the input power of 14.2 W/(m3/s) or 24.8 W/(m3/s). Therefore, it is revealed that the ESP with high electric field is effective for energy saving.
机译:在本文中,研究了具有高电场的静电除尘器(ESP),该静电场不会使用电晕放电。 ESP具有由高压涂层电极和接地板电极组成的平行板构造,该接地板电极具有5mm的间隙。电极长度在150和450mm之间。风扇以0.5和5米/秒的气体速度流动空气。将电压高达12.5kV施加到高压施加电极,由此在电极之间产生25kV / cm的电场强度。空气中的颗粒浓度为0.3和5之间的粒径<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”>μ测量M以计算收集效率。还测量了传统的两级型ESP中的收集效率,并与具有高电场的ESP的结果相比。结果,当输入功率的比率低于0.33W /(m时,电极长度为450mm的电极长度为450mm的收集效率为77.6%。 3 / s),在ESP中具有高电场。另一方面,传统ESP中的收集效率在输入功率为14.2 w /(m)的输入功率下为65.6%或82.0%。 3 / s)或24.8 w /(m 3 / s)。因此,揭示了具有高电场的ESP对于节能有效。

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