The By-Product of Ozone from Electrostatic Air Cleaners

Giovanni Cerrato, N. Fumo
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Abstract

Indoor Air Quality (IAQ) contributes to the health and comfort of people living and working indoors. Poor IAQ can be linked to indoor and outdoor sources of contaminants. One recent solution for improving IAQ is the use of Electrostatic (ES) Air Cleaning technology. An ES air cleaner can be installed in an heating, ventilation, and air conditioning system where it pre-filters large dust particles and shocks smaller particles into a collection tray. However, ES air cleaners have been known to give off ozone as a by-product, which is, itself, an air contaminant. Ozone is found outdoors as product of sunlight combining nitrogen oxides and volatile organic compounds generated from man-made pollution. Indoor ozone concentration will depend on the introduction of outdoor ozone indoors through natural ventilation, mechanical ventilation, and infiltration through the building’s envelope (in order of importance). Two different ES air cleaners, A and B, were installed in the air conditioning system of research House #2 of the TRANE Residential Heating and Cooling Research Lab at the University of Texas at Tyler. A series of ozone experiments were conducted, which included measuring the baseline ozone levels at the research houses with different levels of insulation, observing the increase in ozone due to the powering on of mechanical ventilation, and observing the increase in ozone due to the powering on of the installed ES air cleaners. The baseline ozone levels observed in research house #2, whose envelope is more tightly insulated, was found to be lower than in research house #1 whose envelope is less tightly insulated. With regards to mechanical ventilation, an increase in ozone levels were seen in addition to an even higher increase in ozone levels when the ES air cleaners were powered on in tandem. In terms of the single contribution of the ES air cleaners in raising indoor ozone levels, the data shows that although the ES air cleaners increased the ozone concentration in the house, the levels are not of concern as they were less than the FDA limit on indoor ozone generation. KEYWORDS: Indoor Air Quality; Ozone; Electrostatic Air Cleaner; Infiltration; Mechanical Ventilation; HVAC; Pollutant; Indoor Contaminant
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静电空气净化器臭氧的副产物
室内空气质量(IAQ)有助于人们在室内生活和工作的健康和舒适。室内空气质量差可能与室内外污染物来源有关。改善室内空气质量的一个最新解决方案是使用静电(ES)空气净化技术。ES空气净化器可以安装在供暖、通风和空调系统中,预过滤较大的灰尘颗粒,并将较小的颗粒冲击到收集托盘中。然而,众所周知,ES空气净化器会释放出臭氧作为副产品,而臭氧本身就是一种空气污染物。臭氧是在户外发现的,是阳光将氮氧化物和人为污染产生的挥发性有机化合物结合在一起的产物。室内臭氧浓度将取决于室外臭氧通过自然通风、机械通风和通过建筑物围护结构渗透(按重要性排序)引入室内。德克萨斯大学泰勒分校TRANE住宅供暖和制冷研究实验室2号研究室的空调系统中安装了两种不同的ES空气净化器A和B。进行了一系列臭氧实验,包括测量具有不同绝缘水平的研究室的基线臭氧水平,观察机械通风通电后臭氧的增加,以及观察已安装的ES空气净化器通电后的臭氧增加。在2号研究室观察到的基线臭氧水平比1号研究室低,2号研究屋的外壳隔热更紧密。关于机械通风,当ES空气净化器同时通电时,臭氧水平增加,臭氧水平甚至更高。就ES空气净化器在提高室内臭氧水平方面的单一贡献而言,数据显示,尽管ES空气净化器提高了室内臭氧浓度,但这些水平并不令人担忧,因为它们低于美国食品药品监督管理局对室内臭氧产生的限值。关键词:室内空气质量;臭氧静电空气净化器;渗透;机械通风;暖通空调;污染物室内污染物
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