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Investigation of Removal Capacities of Biofilters for Airborne Viable Micro-Organisms

机译:机载存活微生物的生物滤池去除能力的研究

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摘要

New emerging issues appears regarding the possible aerosolization of micro-organisms from biofilters to the ambient air. Traditional bioaerosol sampling and cultural methods used in literature offer relative efficiencies. In this study, a new method revolving around a particle counter capable of detecting total and viable particles in real time was used. This counter (BioTrak 9510-BD) uses laser-induced fluorescence (LIF) technology to determine the biological nature of the particle. The concentration of viable particles was measured on two semi-industrial pilot scale biofilters in order to estimate the Removal Efficiency in viable particles (REvp) in stable conditions and to examine the influence of pollutant feeding and relative humidification of the gaseous effluent on the REvp. The REvp of biofilters reached near 80% and highlighted both the stability of that removal and the statistical equivalence between two identical biofilters. Pollutant deprivation periods of 12 h, 48 h and 30 days were shown to have no influence on the biofilters’ removal capacity, demonstrating the robustness and adaptation capacities of the flora. In contrast, a 90-day famine period turned the biofilters into emitters of viable particles. Finally, the humidification of the effluent was shown to negatively influence the removal capacity for viable particles, as drying off the air was shown to increase the REvp from 60 to 85%.
机译:关于微生物从生物过滤器到环境空气的雾化可能出现新的问题。文献中使用的传统生物气溶胶采样和培养方法提供了相对的效率。在这项研究中,使用了一种围绕粒子计数器的新方法,该计数器能够实时检测全部粒子和可行粒子。该计数器(BioTrak 9510-BD)使用激光诱导荧光(LIF)技术确定颗粒的生物学性质。在两个半工业中试规模的生物滤池上测量了活菌颗粒的浓度,以便估算稳定条件下活菌颗粒的去除效率(REvp),并检查污染物进料和气态废水相对湿度对REvp的影响。生物滤池的REvp接近80%,突出显示了去除的稳定性以及两个相同生物滤池之间的统计等效性。污染物剥夺期为12 h,48 h和30天对生物滤池的去除能力没有影响,证明了该菌群的健壮性和适应能力。相反,一个90天的饥荒期使生物滤池变成了可行颗粒的发射体。最后,由于出水干燥显示出REvp从60%上升到85%,表明出水的增湿会对可行颗粒的去除能力产生负面影响。

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