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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Inactivation of Airborne Microorganisms Using Novel Ultraviolet Radiation Sources in Reflective Flow-Through Control Devices
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Inactivation of Airborne Microorganisms Using Novel Ultraviolet Radiation Sources in Reflective Flow-Through Control Devices

机译:反射式流通控制装置中新型紫外线辐射源对机载微生物的灭活作用

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摘要

The goal of this study was to design, test, and model cylindrical flow-through control devices used to inactivate airborne microorganisms with non-mercury radiation sources and a reflective coating, through a broad relative humidity (RH) range. Bench-scale tests determined the effectiveness of three different UV-C sources- light emitting diode (LED), xenon, and mercury. In addition to measurements, modeling was performed that combined photon tracing, computational fluid dynamics, and particle tracking to predict the effectiveness of the respective UV challenges. Regardless of device configuration, UV-induced inactivation of airborne Bacillus subtilis and Mycobacterium parafortuitum was markedly sensitive to low humidity (15% RH). Actinometry measurements determined that a high reflectance wall coating increased the flu-ence rate by a factor of 1.6. Predictions of inactivation effectiveness using this hybrid model were in good agreement with experimental observations with errors of less than 15%.
机译:这项研究的目的是设计,测试和建模圆柱形流通控制设备,该设备用于在较宽的相对湿度(RH)范围内用非汞辐射源和反射涂层灭活空气中的微生物。基准测试确定了三种不同的UV-C光源(发光二极管(LED),氙气和汞)的有效性。除测量外,还进行了建模,将光子跟踪,计算流体动力学和粒子跟踪相结合,以预测各个UV挑战的有效性。不论设备配置如何,紫外线引起的空气中枯草芽孢杆菌和副分枝杆菌的失活对低湿度(15%RH)都非常敏感。光度法测量确定高反射率的壁涂层将通量率提高了1.6倍。使用该混合模型预测灭活效果与实验观察结果吻合良好,误差小于15%。

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