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细颗粒物电凝并技术研究进展
王雪; 吕韩雷; 朱廷钰; 张锴
2016
Source Publication煤化工
Issue3Pages:"51-54"
Abstract

雾霾的主要污染物是细颗粒物PM2.5,主要来自燃煤过程,传统除尘技术对PM2.5的捕获效率较低,通过电凝并技术使PM2.5凝聚成大颗粒,再通过传统除尘器脱除,可提高PM2.5的捕集效率。综述了国内外电凝并技术的研究进展,主要包括静电场中异极性荷电颗粒凝并、交变电场中同极性荷电颗粒凝并、交变电场中异极性荷电颗粒凝并;介绍了一种新型荷电凝并装置,细颗粒物与大颗粒之间运动与凝并的直接观测实验,为电凝并技术的实际应用和装备开发提供技术支撑。

Keyword细颗粒物 电凝并 预荷电 双区式 可视化
Document Type期刊论文
Identifierhttp://ir.ipe.ac.cn/handle/122111/22332
Collection研究所(批量导入)
Recommended Citation
GB/T 7714
王雪,吕韩雷,朱廷钰,等. 细颗粒物电凝并技术研究进展[J]. 煤化工,2016(3):"51-54".
APA 王雪,吕韩雷,朱廷钰,&张锴.(2016).细颗粒物电凝并技术研究进展.煤化工(3),"51-54".
MLA 王雪,et al."细颗粒物电凝并技术研究进展".煤化工 .3(2016):"51-54".
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