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Electrostatically assisted air coarse filtration for energy efficient ambient particles removal: Long-term performance in real environment and influencing factors

机译:静电辅助空气粗滤,可有效去除环境中的颗粒物:在实际环境中的长期性能及其影响因素

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Electrostatically assisted air (EAA) coarse filter can improve the particle filtration performance of low efficiency filters without increasing their pressure drop. In this study, we investigated the long-term single pass filtration efficiency for 0.3-10 mu m ambient particles, pressure drop, PM2.5 collecting amount, and energy consumption of an EAA coarse filter during a 51-day operation period. We found that the efficiency of EAA coarse filter varied with average values of 87.6%-97.1% for 0.3-10 mu m particles, respectively, while the pressure drop increased from 14.6 Pa to 63.1 Pa at face air velocity of 1 m/s. Using K-means clustering and principal components analysis methods, we discovered that before 33 days, the significant influencing factors of the efficiency for 0.3-0.5 mu m particles included air temperature, air moisture content, 3-10 mu m particle number concentration, and PM2.5 collecting amount. While after 33 days, only PM2.5 mass collecting amount has a significant negative correlation with the efficiency for 0.3-0.5 mu m particles. The efficiency became relatively unsteady and the PM2.5 collecting amount reached 131 g/m(2) after 33 days. The total energy consumption of EAA coarse filter rose more slowly as PM2.5 collecting amount increased when compared with that of a conventional electret filter (KAFPO78A4, Daikin Inc., Japan). We suggest the high efficiency EAA coarse filtration as an energy efficient method for ambient particle removal in the view of its long-term performance.
机译:静电辅助空气(EAA)粗滤器可以提高低效率过滤器的颗粒过滤性能,而不会增加其压降。在这项研究中,我们研究了在51天的运行时间内,对于0.3-10微米的环境颗粒的长期单程过滤效率,压降,PM2.5收集量以及EAA粗滤器的能耗。我们发现,EAA粗滤器的效率在0.3-10微米的颗粒中的平均值分别为87.6%-97.1%,而当面风速为1 m / s时,压降从14.6 Pa增加到63.1 Pa。使用K均值聚类和主成分分析方法,我们发现在33天之前,影响0.3-0.5微米颗粒效率的重要影响因素包括气温,空气湿度,3-10微米颗粒数浓度和PM2.5收集量。 33天后,只有PM2.5的质量收集量与0.3-0.5μm颗粒的效率显着负相关。效率变得相对不稳定,并且33天后PM2.5的收集量达到131 g / m(2)。与传统驻极体过滤器(KAFPO78A4,日本Daikin Inc.)相比,EAA粗滤器的总能耗随着PM2.5收集量的增加而增加得更慢。考虑到其长期性能,我们建议采用高效EAA粗滤作为一种去除环境颗粒的节能方法。

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