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Air Ion Behavior in Ventilated Rooms

机译:通风室内的空气离子行为

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Air ionizers have seen increasing use as devices for improving indoor air quality, including applications designed to reduce the transmission of infection in healthcare environments. However, little attention has been given to understanding and quantifying the physical behavior of ions in indoor air. This study presents experimental data and a theoretical model to examine the factors that influence the concentration of ions in a ventilated room. The results demonstrate how, with an ionizer in operation, the ion concentration is governed by ion-ion interactions and electrical deposition at the walls, with the ventilation rate having a minimal influence. The results also demonstrate that an ion concentration > 10~(10) ions ·m~(-3) is necessary for these electrical effects to be significant, which has implications for the suitability of an ionizer for a particular location.
机译:空气离子发生器已被用作改善室内空气质量的设备,其中包括旨在减少医疗环境中感染传播的应用。但是,很少有人关注了解和量化室内空气中离子的物理行为。这项研究提供了实验数据和理论模型,以检查影响通风室内离子浓度的因素。结果表明,在运行电离器的情况下,离子浓度如何通过离子-离子相互作用和壁上的电沉积来控制,而通风速率的影响最小。结果还表明,要使这些电效应显着,必须使离子浓度> 10〜(10)离子·m〜(-3),这对电离器在特定位置的适用性具有影响。

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