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首页> 外文期刊>Journal of Electrostatics >Experimental investigation on charging characteristics and penetration efficiency of PM2.5 emitted from coal combustion enhanced by positive corona pulsed ESP
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Experimental investigation on charging characteristics and penetration efficiency of PM2.5 emitted from coal combustion enhanced by positive corona pulsed ESP

机译:正电晕脉冲电除尘器增强煤燃烧过程中PM2.5的充电特性和渗透效率的实验研究

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摘要

The electrostatic precipitator (ESP) has been extensively used for collecting aerosol particles emitted from coal combustion, but its collection efficiency of PM2.5 (Particulate matter whose aerodynamic diameter is less than 2.5 mu m) is relatively low due to insufficient particle charging. The positive pulsed ESP is considered to enhance particle charging and improve collection efficiency. A laboratory-scale pulsed ESP with wire-plate electrode configuration was established to investigate the particle charging and penetration efficiency under controlled operating conditions of different applied impulse peak voltages, impulse frequencies, dust loadings and residence times. The results show that most particles larger than 0.2 mu m are negatively charged, while most particles smaller than 0.2 mu m are positively charged. For a given operating condition, the particle penetration efficiency curve has the highest penetration efficiency for particles with a diameter near 0.2 mu m, and there is always a negative correlation between the particle penetration efficiency and the average number of charges per particle. Under the same operating conditions, the particle penetration efficiency decreases with increasing impulse peak voltage and impulse frequency, but increases as the dust loading increases. The results imply that residence time of 4 s is optimum for particle charging and collection. PM2.5 number reduction exceeding 90% was achieved in our pulsed ESP.
机译:静电除尘器(ESP)已广泛用于收集燃煤燃烧产生的气溶胶颗粒,但由于颗粒充电不足,其PM2.5(空气动力学直径小于2.5微米的颗粒物)的收集效率相对较低。正脉冲ESP被认为可以增强颗粒电荷并提高收集效率。建立了实验室规模的带有线板电极配置的脉冲ESP,以研究在不同施加的脉冲峰值电压,脉冲频率,粉尘载荷和停留时间的受控操作条件下,粒子的充电和穿透效率。结果表明,大多数大于0.2微米的颗粒带负电,而大多数小于0.2微米的颗粒带正电。对于给定的操作条件,对于直径接近0.2微米的颗粒,颗粒渗透效率曲线具有最高的渗透效率,并且颗粒渗透效率与每个颗粒的平均电荷数之间始终存在负相关关系。在相同的工作条件下,颗粒渗透效率随着脉冲峰值电压和脉冲频率的增加而降低,但随着粉尘负荷的增加而增加。结果表明,4 s的停留时间最适合颗粒的充电和收集。在我们的脉冲式ESP中,PM2.5数量减少了90%以上。

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