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Kinetic Analysis of Competition between Aerosol Particle Removal and Generation by lonization Air Purifiers

机译:离子化空气净化器去除气溶胶颗粒与生成之间竞争的动力学分析

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摘要

lonization air purifiers are increasingly used to remove aerosol particles from indoor air. However, certain ionization air purifiers also emit ozone. Reactions between the emitted ozone and unsaturated volatile organic compounds (VOC) commonly found in indoor air produce additional respirable aerosol particles in the ultrafine (< 0.1 μm) and fine (< 2.5 μm) size domains. A simple kinetic model is used to analyze the competition between the removal and generation of particulate matter by ionization air purifiers under conditions of a typical residential building. This model predicts that certain widely used ionization air purifiers may actually increase the mass concentration of fine and ultrafine particulates in the presence of common unsaturated VOC, such as limonene contained in many household cleaning products. This prediction is supported by an explicit observation of ultrafine particle nucleation events caused by the addition of D-limonene to a ventilated office room equipped with a common ionization air purifier.
机译:离子化空气净化器越来越多地用于从室内空气中去除气溶胶颗粒。但是,某些电离空气净化器也会排放臭氧。室内空气中常见的排放臭氧与不饱和挥发性有机化合物(VOC)之间的反应会在超细(<0.1μm)和细小(<2.5μm)尺寸域中产生其他可吸入的气溶胶颗粒。一个简单的动力学模型用于分析典型住宅建筑条件下电离空气净化器清除和产生颗粒物之间的竞争。该模型预测,在常见的不饱和VOC(例如许多家庭清洁产品中的柠檬烯)存在的情况下,某些广泛使用的电离空气净化器实际上可能会提高细颗粒和超细颗粒的质量浓度。通过对装有普通电离空气净化器的通风办公室中添加D-柠檬烯引起的超细颗粒成核事件的明确观察,可以支持此预测。

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