峰值发射波长为222nm的杀菌紫外灯产生臭氧

M. Link, Andrew Shore, B. Hamadani, D. Poppendieck
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引用次数: 4

摘要

最近对含有峰值发射波长为222纳米(GUV222)的杀菌紫外线灯的商用设备的兴趣集中在减轻室内病毒传播和对室内空间消毒,同时将对人体组织的风险降到最低。然而,222nm的光可以在空气中产生臭氧(O3)。臭氧是室内空气中一种不受欢迎的成分,因为从急性到慢性接触会对健康产生影响,而且它能够通过氧化化学作用降低室内空气质量。我们测量了一盏GUV222灯在距离光源5cm处的总辐照度为27.0 W m-2 +/- 4.6 W m-2,光谱范围为210 nm至230 nm,峰值发射集中在222 nm,并评估了该灯在31.5 m3不锈钢腔中产生O3的潜力。在7个4小时的实验中,平均臭氧混合比从接近仪器检测极限的水平增加到48 ppbv +/- 1 ppbv (94 ug -3 +/- 2 ug -3)。我们确定该灯的平均O3生成速率为1.10 mg h-1 +/- 0.15 mg h-1。使用辐射测定法和化学光化测定法,我们估计了有效灯的影响,使GUV222灯能够预测臭氧的产生,最多在测量的混合比的10%以内。由于O3可以与室内气体和表面发生反应,从而形成其他潜在的副产物,因此未来的研究应评估GUV222空气净化装置产生的O3。
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Ozone Generation from a Germicidal Ultraviolet Lamp with Peak Emission at 222 nm
Recent interest in commercial devices containing germicidal ultraviolet lamps with a peak emission wavelength at 222 nm (GUV222) has focused on mitigating virus transmission indoors and disinfecting indoor spaces while posing minimum risk to human tissue. However, 222 nm light can produce ozone (O3) in air. O3 is an undesirable component of indoor air because of health impacts from acute to chronic exposure and its ability to degrade indoor air quality through oxidation chemistry. We measured the total irradiance of one GUV222 lamp at a distance of 5 cm away from the source to be 27.0 W m-2 +/- 4.6 W m-2 in the spectral range of 210 nm to 230 nm, with peak emission centered at 222 nm and evaluated the potential for the lamp to generate O3 in a 31.5 m3 stainless steel chamber. In seven four-hour experiments average O3 mixing ratios increased from levels near the detection limit of the instrument to 48 ppbv +/- 1 ppbv (94 ug m-3 +/- 2 ug m-3). We determined an average constant O3 generation rate for this lamp to be 1.10 mg h-1 +/- 0.15 mg h-1. Using a radiometric method and chemical actinometry, we estimate effective lamp fluences that allow prediction of O3 generation by the GUV222 lamp, at best, within 10 % of the measured mixing ratios. Because O3 can react with gases and surfaces indoors leading to the formation of other potential by-products, future studies should evaluate the production of O3 from GUV222 air cleaning devices.
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