首页> 外文会议>Industry Applications Conference, 1999. Thirty-Fourth IAS Annual Meeting. Conference Record of the 1999 IEEE >Electric air cleaner composed of non-thermal plasma reactor and electrostatic precipitator
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Electric air cleaner composed of non-thermal plasma reactor and electrostatic precipitator

机译:由非热等离子体反应器和静电除尘器组成的电动空气净化器

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摘要

Recent concerns of environmental protection encourage the use of a compact indoor air cleaner and various types of electrostatic precipitators (ESPs). Although a wide range of particles in the air, such as airborne dusts, can be collected effectively with an ordinary ESP using a DC corona discharge, it is difficult to remove gaseous compounds such as tobacco smoke which induce submicron particles and an offensive odor. In the present study, the authors investigated the collection of submicron particles and the decomposition of acetaldehyde (CH/sub 3/CBO) using a commercial ESP and a nonthermal plasma reactor because the offensive odor of tobacco smoke is mainly caused by acetaldehyde molecules. For the ESP, they evaluated particle-size dependent collection efficiency using a monodispersed aerosol because little investigation has been conducted in this area. As for the decomposition of acetaldehyde, more than 90% decomposition efficiency was obtained with the use of nonthermal plasma under dry air. However, the decomposition deteriorated under humidified conditions. A higher collection efficiency was achieved for a particle size of 0.6 /spl mu/m than that of 0.3 /spl mu/m, although the overall collection efficiency exceeded 99%. The combination of the two technologies leads to a breakthrough in conventional indoor electronic air cleaner technology.
机译:近期对环境保护的关注鼓励使用紧凑型室内空气滤清器和各种类型的静电除尘器(ESP)。尽管使用直流电晕放电的普通ESP可以有效地收集空气中的各种微粒,例如空气中的尘埃,但是很难去除气态化合物,例如引起亚微米级微粒和令人讨厌的气味的烟草烟雾。在本研究中,作者研究了使用商业ESP和非热等离子体反应器收集亚微米颗粒和乙醛(CH / sub 3 / CBO)的分解,因为烟草烟雾的恶臭主要是由乙醛分子引起的。对于ESP,他们使用单分散气雾剂评估了取决于粒度的收集效率,因为在该领域进行的研究很少。至于乙醛的分解,在干燥空气下使用非热等离子体可获得超过90%的分解效率。然而,在潮湿条件下分解恶化。尽管总收集效率超过99%,但对于0.6 / spl mu / m的粒径,其收集效率要高于0.3 / spl mu / m的收集效率。两种技术的结合带来了传统的室内电子空气净化器技术的突破。

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