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首页> 外文期刊>Journal of Aerosol Science >A novel polymer-arrayed electrostatic precipitator with electrical resistance material for the removal of fine particles
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A novel polymer-arrayed electrostatic precipitator with electrical resistance material for the removal of fine particles

机译:一种新型的带有电阻材料的聚合物阵列静电除尘器,用于去除细小颗粒

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摘要

Electrostatic precipitators (ESPs) have been widely used for air purification applications as they have no degradation issues and do not need to be replaced periodically. However, the generation of ozone by ESPs has been regarded as one of their most serious drawbacks. This paper presents the development of an ozone emission free ESP comprising a carbon brush ionizer and a polymeric arrayed collector (PAC). The collector consisted of sixty layers, where each layer had three stratums: polyethylene terephtha-late (PET) film, conductive ink (CI), and PET film. The performance of the ESP was evaluated for three CI resistance levels: 10~7,10~(10), and 10~(13) Ω/m~2. The ESP was evaluated for particle filtration efficiency in a wind tunnel with a 0.3 μm challenge aerosol for an applied voltage ranging from 3 to 9 kV. The clean air delivery rate (CADR) was evaluated by coupling the ESP to a commercial air purifier to deliver purified air to a controlled 30-m~3 chamber in which particle concentration and ozone monitoring instruments were placed. Single pass ESP efficiency peaked at 89.5% for a high voltage (9kV), high resistance (10~(13) Ω/m~2), and low face velocity (1 m/s). The CADR for the ESP was 1.2 times higher than that for a standard high efficiency particulate air filter, with no ozone generation in a 24-h test. Thus, the proposed PAC-based ESP provides a viable solution for an ozone-free ESP, one that retains the benefits while eliminating the risk.
机译:静电除尘器(ESP)由于没有降解问题且不需要定期更换,因此已广泛用于空气净化应用。但是,ESP产生的臭氧被认为是其最严重的缺点之一。本文介绍了一种无臭氧排放的ESP的开发,该ESP包括碳刷电离器和聚合物阵列收集器(PAC)。集电器由六十层组成,其中每一层具有三个层次:聚对苯二甲酸乙二醇酯(PET)薄膜,导电油墨(CI)和PET薄膜。在三种CI电阻等级下评估ESP的性能:10〜7、10〜(10)和10〜(13)Ω/ m〜2。在3到9 kV的施加电压下,用0.3μm挑战气雾剂对风洞中的ESP进行了颗粒过滤效率评估。通过将ESP耦合到商用空气净化器,以将净化后的空气输送到30-m〜3的受控室中,在该室中放置了颗粒浓度和臭氧监测仪器,从而评估清洁空气的输送率(CADR)。对于高电压(9kV),高电阻(10〜(13)Ω/ m〜2)和低表面速度(1 m / s),单程ESP效率达到了89.5%的峰值。 ESP的CADR是标准高效颗粒空气过滤器的CADR的1.2倍,并且在24小时的测试中没有产生臭氧。因此,所提出的基于PAC的ESP为无臭氧的ESP提供了可行的解决方案,既保持了优势,又消除了风险。

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