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Lab-scale test of a ventilation system including a dielectric barrier discharger and UV-photocatalyst filters for simultaneous removal of gaseous and particulate contaminants

机译:通风系统的实验室规模测试,包括介电屏障放电器和紫外线光催化剂过滤器,用于同时去除气态和颗粒污染物

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A ventilation system including a dielectric barrier discharger (DBD) and UV-photocatalyst (UVP) filters was designed and tested for simultaneous removal of gaseous and particulate contaminants in a test chamber. The DBD was used in the first stage of electrostatic precipitator (ESP) for particle charging and gas decomposition. An applied DC electric field was used in the second stage of ESP to collect the charged particles. UVP filters were then used to decompose gaseous species, such as formaldehyde (HCHO) and benzene, toluene, and xylene (BTX) including O_3, which was inherently produced by the DBD. %Reductions in mass concentration of PM2.5 and number concentration of submicron particles were approximately 79.5% and 76.3%, respectively, after the ventilation with air cleaning system was operated for 5 h. Both HCHO and BTX were completely removed when the initial concentration of each gas was 1 ppm.
机译:设计并测试了包括电介质阻挡放电器(DBD)和紫外线光催化剂(UVP)过滤器的通风系统,以同时去除测试室内的气态和颗粒污染物。 DBD用于静电除尘器(ESP)的第一级,用于颗粒充电和气体分解。在ESP的第二阶段中,将施加的直流电场用于收集带电粒子。然后,使用UVP过滤器分解由DBD固有产生的气态物质,例如甲醛(HCHO)和包括O_3的苯,甲苯和二甲苯(BTX)。使用空气净化系统通风5小时后,PM2.5的质量浓度降低的百分比和亚微米颗粒的数量浓度的降低分别约为79.5%和76.3%。当每种气体的初始浓度为1 ppm时,HCHO和BTX都被完全去除。

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