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- W2119001723 abstract "Ionization 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 microm) and fine (<2.5 microm) 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." @default.
- W2119001723 created "2016-06-24" @default.
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- W2119001723 date "2007-02-21" @default.
- W2119001723 modified "2023-10-01" @default.
- W2119001723 title "Kinetic Analysis of Competition between Aerosol Particle Removal and Generation by Ionization Air Purifiers" @default.
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- W2119001723 doi "https://doi.org/10.1021/es061760y" @default.
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