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Feasibility of Generating Peaks of Bioaerosols for Laboratory Experiments

机译:生成生物气溶胶峰进行实验室实验的可行性

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Bioaerosol concentration peaks are frequently encountered in real-life atmospheres (indoor, outdoor, workplace, etc.), where they can be caused by several factors. However, evolution over time and variability of microbiological pollutant concentrations remain under-documented. The contribution of such peaks in the onset or the worsening of respiratory symptoms – in particular immuno-allergic reactions – has yet to be extensively studied. Although experimental bioaerosol generators are increasingly used, the intentional and controlled production of concentration peaks of biological agents has not yet been utilized in laboratory experiments. The main objective of this study was to show that it is possible to produce experimental bioaerosol concentration peaks with defined characteristics. Experiments were performed with a ‘Liquid Sparging Aerosoliser’-type generator. With this system, peaks can be created by increasing the bubbling airflow through a film of bacterial (Escherichia coli) or fungal (Penicillium brevicompactum) liquid culture. The higher the set point value of the bubbling airflow, the greater the maximum bioaerosol concentration during the generated peak. Similarly, longer-lived peaks can be created by maintaining the increased airflow for a longer period of time. For both studied species, the relative size distribution was constant over time, regardless of modifications to the bubbling flow rate. The operator can monitor and control peak formation with this system thanks to real-time measurement of the number concentrations, targeting the appropriate particle size classes corresponding to diameters of the aerosolised microorganisms. This generator, characterized by gentle aerosolisation and a capacity to produce bioaerosol peaks, may contribute to enrich laboratory experiments for numerous applications.
机译:在现实生活中(室内,室外,工作场所等),经常会遇到生物气溶胶浓度峰值,这可能是由多种因素引起的。但是,随着时间的推移以及微生物污染物浓度的变化仍未得到充分证明。这种高峰在呼吸系统症状发作或恶化(尤其是免疫过敏反应)中的作用尚未得到广泛研究。尽管越来越多地使用实验性生物气溶胶发生器,但是在实验室实验中还没有利用有意控制的生物剂浓度峰的产生。这项研究的主要目的是表明有可能产生具有确定特征的实验性生物气溶胶浓度峰。实验是使用“液体喷射喷雾器”型发生器进行的。使用此系统,可以通过增加通过细菌(大肠杆菌)或真菌(brevicompactum)液体培养膜的鼓泡气流来产生峰。鼓泡气流的设定值越高,在生成的峰值期间最大的生物气溶胶浓度就越大。类似地,可以通过将增加的气流保持更长的时间来创建寿命更长的峰值。对于这两个研究物种,相对大小分布随时间都是恒定的,而不管鼓泡流速的变化如何。通过实时测量数量浓度,操作员可以使用该系统监视和控制峰的形成,并针对与气雾化微生物直径相对应的适当粒度等级。这种发生器的特点是轻柔的雾化和产生生物气溶胶峰的能力,可能有助于丰富用于许多应用的实验室实验。

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