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Filtration Efficiency of Air Conditioner Filters and Face Masks to Limit Exposure to Aerosolized Algal Toxins

机译:空调过滤器和面部面罩的过滤效率限制暴露于雾化藻类毒素

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Harmful algal blooms (HABs) can generate toxins that can be aerosolized and negatively impact human health through inhalation. HABs are often found in waterways near residences, therefore, aerosolized HAB toxins can potentially affect both indoor and outdoor air quality. Given that HABs are predicted to increase worldwide, effective mitigation strategies are needed to prevent the inhalation of aerosolized HAB toxins. In this work, we characterized both the particle filtration efficiency using particle sizing instruments as well as the mass concentration of different congeners of aerosolized microcystin (MC) toxins that penetrate through commercially available face masks and air conditioner (AC) filters. Particles were generated from cultures of the toxin-producing cyanobacteria Microcystis aeruginosa. Hydrophobic congeners of microcystin including MC-LF and MC-LW were enriched in aerosols compared to water, with MC-LR being the most abundant, which has implications for the toxicity of inhalable particles generated from HAB-contaminated waters. Particle transmission efficiencies and toxin filtration efficiencies scaled with the manufacturer-provided filter performance ratings. Up to 80% of small, microcystin-containing aerosols were transmitted through AC filters with low filter performance ratings. In contrast, both face masks as well as AC filters with high filter performance ratings efficiently removed toxin-containing particles to below limits of quantification. Our findings suggest that face masks and commercially available AC filters with high filtration efficiency ratings are suitable mitigation strategies to avoid indoor and outdoor air exposure to aerosolized HAB toxins. This work also has relevance for reducing airborne exposure to other HAB toxins, non-HAB toxins, pathogens, and viruses, including SARS-CoV-2, the virus responsible for the COVID-19 pandemic.
机译:有害的藻类绽放(Habs)可以产生毒素,可以通过吸入产生雾化和对人体健康产生负面影响。 Habs经常在居住区附近的水道中发现,因此,雾化HAB毒素可能会影响室内和室外空气质量。鉴于HABS预计在全球范围内增加,需要有效的缓解策略来防止吸入雾化HAB毒素。在这项工作中,我们用颗粒尺寸仪器表征颗粒过滤效率以及雾化微囊藻(MC)毒素的不同同源仪的质量浓度,所述雾化微囊藻(MC)毒素通过市售的面部面罩和空调(AC)过滤器。从毒素产生的毒素的蓝细菌微囊杆菌铜绿假单胞菌的培养物产生颗粒。与水相比,MC-LR在气溶胶中富含MC-LF和MC-LW的微囊杆菌的疏水性同性恋者,MC-LR是最丰富的,这对来自HAB污染水域产生的可吸入颗粒的毒性有影响。粒子传递效率和毒素过滤效率缩放了制造商提供的过滤器性能等级。通过具有低过滤器性能额定值的AC滤波器透过含有小微囊藻气溶胶的80%。相比之下,脸部面罩以及具有高滤波器性能额定值的交流滤波器有效地将含毒素的颗粒的含量高于量化。我们的研究结果表明,具有高过滤效率额定值的面部面罩和商业上可用的交流滤波器是适当的缓解策略,以避免室内和室外空气暴露于雾化HAB毒素。这项工作还具有与其他HAB毒素,非HAB毒素,病原体和病毒的空气载体暴露有关,包括SARS-COV-2,该病毒负责Covid-19大流行的病毒。

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