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Design of an environmentally controlled rotating chamber for bioaerosol aging studies

机译:用于生物气溶胶老化研究的环境控制旋转室的设计

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摘要

A chamber was designed and built to study the long-term effects of environmental conditions on air-borne microorganisms. The system consists of a 55.5-L cylindrical chamber, which can rotate at variable speeds on its axis. The chamber is placed within an insulated temperature controlled enclosure which can be either cooled or heated with piezoelectric units. A germicidal light located at the chamber center irradiates at a 360° angle. Access ports are located on the stationary sections on both ends of the chamber. Relative humidity (RH) is controlled by passing the aerosol through meshed tubes surrounded by desiccant. Validation assay indicates that the interior temperature is stable with less than 0.5 °C in variation when set between 18 and 30 °C with the UV light having no effect of temperature during operation. RH levels set at 20%, 50% and 80% varied by 2.2%, 3.3% and 3.3%, respectively, over a 14-h period. The remaining fraction of particles after 18 h of suspension was 8.8% at 1 rotation per minute (rpm) and 2.6% at 0 rpm with the mass median aerodynamic diameter (MMAD) changing from 1.21 ± 0.04 μm to 1.30 ± 0.02 μm at 1 rpm and from 1.21 ± 0.04 μm to 0.91 ± 0.01 μm at 0 rpm within the same time period. This chamber can be used to increase the time of particle suspension in an aerosol cloud and control the temperature, RH and UV exposure; the design facilitates stationary sampling to be performed while the chamber is rotating.
机译:设计并建造了一个研究室,以研究环境条件对空气传播微生物的长期影响。该系统由一个55.5-L圆柱形腔室组成,该腔室可以在其轴上以可变速度旋转。腔室放置在绝缘的温度受控的外壳内,该外壳可以用压电单元冷却或加热。位于腔室中心的杀菌光以360°角照射。入口位于腔室两端的固定部分上。相对湿度(RH)通过使气雾剂穿过被干燥剂包围的网状管来控制。验证分析表明,当室内温度设定在18至30°C之间时,内部温度稳定,变化范围小于0.5°C,并且紫外线在操作过程中对温度没有影响。在14小时内,设定为20%,50%和80%的RH水平分别变化了2.2%,3.3%和3.3%。悬浮18小时后,每分钟1转(rpm)时颗粒的剩余分数为8.8%,在0 rpm下为2.6%,质量中位数空气动力学直径(MMAD)从1rpm的1.21±0.04μm变为1.30±0.02μm并在同一时间段内以0 rpm从1.21±0.04μm增至0.91±0.01μm。该室可用于增加颗粒在气雾云中的悬浮时间,并控制温度,相对湿度和紫外线照射;该设计有助于在腔室旋转时执行固定采样。

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