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Temporal/seasonal variations of size-dependent airborne fungi indoor/outdoor relationships for a wind-induced naturally ventilated airspace

机译:风致自然通风空域尺寸依赖的空气传播真菌室内/室外关系的时间/季节变化

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With the use of published temporal/seasonal size characteristics of fungal spores and meteorological data in the subtropical climate, we estimated the airborne fungal concentration indoor/outdoor (I/O) ratios in a wind-induced naturally ventilated home. We expanded previous size-dependent indoor air quality model based on a hygroscopic growth factor as a function of relative humidity (RH) on aerodynamic diameter and concentration of fungal spores. The average geometric mean diameters of airborne fungi decreased from outdoor 2.58 ± 0.37 to indoor 1.91±0.12 μm in summer, whereas decreased from outdoor 2.79 ± 0.32 to indoor 1.73 ± 0.10μm in winter, resulting from the effect of hygroscopicity of airborne fungi. The higher indoor airborne fungal concentrations occurred in early and late afternoon in which median values were 699.29 and 626.20CFUm~(-3) in summer as well as 138.71 and 99.01 CFU m~(-3) in winter, respectively, at 2 a.m. and 8 p.m. In the absence of indoor sources, summer has higher mean I/O ratios of airborne fungal concentration (0.29 - 0.58) than that in winter (0.12 - 0.16). Parsimoniously, our proposed RH-corrected I/O ratio model could be used to estimate the indoor source concentrations of bioaerosols provided that the actual measured fungus-specific I/O ratios are available.
机译:利用已发布的真菌孢子的时空/季节大小特征和亚热带气候中的气象数据,我们估算了风致自然通风的房屋中空气传播的真菌浓度室内/室外(I / O)比率。我们根据吸湿性生长因子作为相对湿度(RH)对空气动力学直径和真菌孢子浓度的函数,扩展了以前的尺寸依赖性室内空气质量模型。空气真菌的平均几何平均直径在夏季从室外的2.58±0.37减小到室内的1.91±0.12μm,而在冬季,空气的平均几何平均直径从室外的2.79±0.32减小到室内的1.73±0.10μm,这是由于空气真菌的吸湿性所致。室内空气中的真菌浓度较高,发生在午后和午后,夏季的中位数分别为699.29和626.20CFU m〜(-3),冬季的凌晨2点和下午分别为138.71和99.01 CFU m〜(-3)。晚上八点在没有室内资源的情况下,夏季空气中真菌浓度的平均I / O比(0.29-0.58)比冬季(0.12-0.16)高。简而言之,我们的建议的RH校正I / O比模型可用于估算室内生物气溶胶的源浓度,前提是可以使用实际测得的真菌特异性I / O比。

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