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Development of a Fungal Biosensor for Field Verifying the Surface Disinfection of Ultraviolet Germicidal Irradiation Systems for Air Handling Units

机译:真菌生物传感器的开发,用于现场验证空气处理机组的紫外线杀菌系统的表面消毒

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This study developed a fungal biosensor to verify the germicidal effect of ultraviolet germicidal irradiation (UVGI) systems in the field from a biosensor originally developed to assess indoor climate. A UVC ray was irradiated on the fungal spores of the biosensors at various doses, and the differences in hyphal length after subsequent incubation were observed to verify the susceptibility of the fungal biosensor to C-band ultraviolet (UVC). The results showed reasonable correlations between UVC dosage and hyphal length. These fungal biosensors were thereafter attached to the coil and the drain pan of an air handling unit with a UVGI system installed and exposed to UVC for 1 h to test the effectiveness of the biosensors on the UVGI systems in the field. The hyphal lengths observed after incubationcorresponded with UVC doses of 468-1620 J·m~(-2) at each sampling point as shown in the previous susceptibility experiments. The extended experiments to confirm the susceptibility of the fungal spores showed that the spores were more sensitive to UVC ray than those of the fungal biosensor and had similar susceptibility to the same UVC doses even at different UVC intensities.
机译:这项研究开发了一种真菌生物传感器,以从最初为评估室内气候而开发的生物传感器中验证紫外线杀菌辐射(UVGI)系统在现场的杀菌效果。以不同剂量将UVC射线照射到生物传感器的真菌孢子上,并观察随后孵育后菌丝长度的差异,以验证真菌生物传感器对C波段紫外线(UVC)的敏感性。结果表明,UVC剂量与菌丝长度之间存在合理的相关性。然后将这些真菌生物传感器安装到装有UVGI系统的空气处理装置的盘管和排水盘上,并暴露在UVC中1小时,以测试该生物传感器在野外的UVGI系统上的有效性。孵育后观察到的菌丝长度对应于每个采样点的UVC剂量468-1620 J·m〜(-2),如先前的药敏实验所示。扩展的实验证实了真菌孢子的敏感性表明,这些孢子对真菌的紫外线辐射比真菌生物传感器更敏感,即使在不同的紫外线强度下,对相同的紫外线剂量也具有相似的敏感性。

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