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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Filtration performances of HVAC filters for PM10 and microbial aerosols-Influence of management in a lab-scale air handling unit
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Filtration performances of HVAC filters for PM10 and microbial aerosols-Influence of management in a lab-scale air handling unit

机译:用于PM10和微生物气溶胶的HVAC过滤器的过滤性能-实验室规模的空气处理机组中管理的影响

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Filtration performances of air handling unit (AHU) filters for particles and microbial aerosols were investigated. The influence of the AHU operational conditions on the behavior of microorganisms collected on the filters was also studied. A lab-scale AHU with two filtration stages was developed and validated for the study of downsized filters with industrial geometries. Three types of filters of different efficiency were considered: G4, F7, and F9, according to European standard EN 779. Two configurations of filters were studied: G4 pleated/F7 bag and F7/F9 bag. Filters were sequentially clogged by alumina particles, which provided a mineral fraction in the particulate cake, and then by micronized rice particles, which provided the fungus Penicillium chrysogenum and an organic fraction that acts as a substrate for microorganisms. Finally, a microbial aerosol composed of endospores of Bacillus subtilis and spores of Aspergillus niger was nebulized to contaminate filters. After clogging, periods of 5 days on and 2 day weekend stops with restarts of ventilation were simulated for 6 weeks. The results showed that the filter efficiency for particles was quite comparable to that for microbial aerosols expressed in cultivable concentration. The particulate cake composed of alumina and micronized rice particles enabled the growth of the endogenous species P. chrysogenum and the survival of exogenous species B. subtilis and A. niger on filters. During restarts of ventilation, low particle concentrations were detected downstream of the second filtration stages by release but the microbial concentration from the fraction of air sampled was below the detection limit.
机译:研究了空气处理装置(AHU)过滤器对颗粒和微生物气溶胶的过滤性能。还研究了AHU操作条件对通过过滤器收集的微生物行为的影响。开发了具有两个过滤阶段的实验室规模的AHU,并经过验证可用于研究具有工业几何尺寸的小型过滤器。根据欧洲标准EN 779,考虑了三种效率不同的过滤器:G4,F7和F9。研究了两种过滤器配置:G4折叠/ F7袋和F7 / F9袋。依次用氧化铝颗粒(在颗粒状滤饼中提供矿物质部分),然后用微粉化的米粒(提供真菌产黄青霉菌和用作微生物底物的有机部分)堵塞过滤器。最后,将由枯草芽孢杆菌的内生孢子和黑曲霉的孢子组成的微生物气雾化以污染过滤器。堵塞后,模拟5天和2天周末停止,并重新开始通风,为期6周。结果表明,颗粒物的过滤效率与可培养浓度下的微生物气溶胶的过滤效率相当。由氧化铝和稻米微粒组成的颗粒状滤饼使内生物种金黄色葡萄球菌得以生长,并在过滤器上存活了外源物种枯草芽孢杆菌和黑曲霉。在重新开始通风的过程中,在第二个过滤阶段的下游通过释放检测到了较低的颗粒浓度,但来自采样空气部分的微生物浓度低于检测极限。

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