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首页> 外文期刊>Aerosol and Air Quality Research >Effects of Acoustic and Pulse Corona Discharge Coupling Field on Agglomeration and Removal of Coal-fired Fine Particles
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Effects of Acoustic and Pulse Corona Discharge Coupling Field on Agglomeration and Removal of Coal-fired Fine Particles

机译:声脉冲电晕耦合场对燃煤细颗粒团聚和去除的影响

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Fine particles from coal-fired power plants are harmful to human health and the atmosphere. Traditional electrostatic precipitators (ESPs) exhibit low efficiency in removing such particles. By contrast, pulsed corona discharge and high-intensity acoustic waves are effective pretreatment methods by which fine particles can be agglomerated into larger particles. Coupling these two fields can enhance the agglomeration process. In this study, a laboratory-scale experimental setup was established to investigate the agglomeration and efficient removal of fine particles. According to the results, application of the coupling field increased the median particle diameter (D50) and agglomeration ratio (Rae) compared with use of a single field. Under the coupling field approach, when pulse input and acoustic wave parameters were 55 kV–100 Hz and 143 dB–1600 Hz, respectively, D50 and Rae reached 73.28 μm and 9.18, respectively, and numerous fine particles agglomerated into large particles that could be removed using an ESP. Furthermore, the overall efficiency of removing fine particles increased to 98.3% under optimal conditions compared with the 80.7% efficiency exhibited when pretreatment was not applied.
机译:燃煤电厂的细颗粒物对人体健康和大气有害。传统的静电除尘器(ESP)去除此类颗粒的效率较低。相比之下,脉冲电晕放电和高强度声波是有效的预处理方法,通过该方法可以将细颗粒聚集成更大的颗粒。耦合这两个字段可以增强集聚过程。在这项研究中,建立了实验室规模的实验装置,以研究细颗粒的团聚和有效去除。根据结果​​,与使用单个场相比,耦合场的应用增加了中值粒径(D50)和附聚比(Rae)。在耦合场方法下,当脉冲输入和声波参数分别为55 kV–100 Hz和143 dB–1600 Hz时,D50和Rae分别达到73.28μm和9.18,许多细颗粒聚集成大颗粒,可以使用ESP删除。此外,与未应用预处理时的80.7%的效率相比,在最佳条件下去除细颗粒的总效率提高到98.3%。

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