商用空气净化器减少222 nm杀菌紫外线对室内臭氧和二次产物的影响

Nadia Tahsini*, Selena Zhang, Matthew B. Goss, Seamus C. Frey, Yaowei Li, Jessica B. Smith, Norton T. Allen, M Pang, Richard D. Williamson, Frank N. Keutsch and Jesse H. Kroll*, 
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引用次数: 0

摘要

远紫外- c (UVC)光,特别是222 nm的杀菌紫外线(GUV222),因其在室内灭活空气传播病原体和防止传染病传播方面的潜力而受到广泛关注。然而,GUV222也会产生臭氧(O3),对人体健康构成威胁,并引发额外的光化学反应,可能会降低室内空气质量。空气净化器提供了一个机会,通过去除有害副产品来抵消GUV222的缺点;然而,据我们所知,这一点从未得到证实。在这里,我们在一个7.5立方米的特氟龙室内进行了实验室实验,使用了两种市售空气净化器──一种是氧化锰催化剂的“臭氧净化器”,一种是活性炭- hepa的“挥发性有机化合物(VOC) +颗粒物(PM)净化器”──同时使用了一盏GUV222灯。我们表明,这两种清洁器都能去除一系列主要污染物,包括O3、NO2、甲醛、挥发性有机化合物和颗粒。将室内结果应用于光化学模型,模拟150立方米房间的化学反应,结果表明,在典型的室内环境中,单个清洁器可以适度降低O3水平,并大幅降低二次污染物水平。这些结果表明,通过使用空气净化技术可以减少GUV222产生的室内空气污染物,从而改善室内空气质量,同时最大限度地发挥杀菌紫外线对人体健康的潜在益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mitigation of Indoor Ozone and Secondary Products from 222 nm Germicidal Ultraviolet Light Using Commercial Air Cleaners

Mitigation of Indoor Ozone and Secondary Products from 222 nm Germicidal Ultraviolet Light Using Commercial Air Cleaners

Far ultraviolet-C (UVC) light, especially germicidal UV light at 222 nm (GUV222), has received considerable attention for its potential to deactivate airborne pathogens indoors and prevent the spread of infectious disease. However, GUV222 also generates ozone (O3), posing human health risks and initiating additional photochemistry that may degrade indoor air quality. Air cleaners present an opportunity to counteract the drawbacks of GUV222 by removing harmful byproducts; however, to our knowledge, this has never been demonstrated. Here, we conduct laboratory experiments in a 7.5 m3 Teflon chamber using two commercially available air cleaners─a manganese-oxide-catalyst “ozone cleaner” and an activated-carbon-HEPA “volatile organic compound (VOC) + particulate matter (PM) cleaner”─each simultaneously with a GUV222 lamp. We show that both cleaner types remove a wide range of key pollutants, including O3, NO2, formaldehyde, VOCs, and particles. Application of chamber results to a photochemical model simulating chemistry in a 150 m3 room suggests that a single cleaner can achieve modest reductions in O3 levels and substantial reductions in secondary pollutant levels within typical indoor environments. These results indicate that indoor air pollutants from GUV222 can be mitigated through the use of air cleaning technology, thereby improving indoor air quality while maximizing the potential benefit of germicidal UV for human health.

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