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Removal and retention of viral aerosols by a novel alumina nanofiber filter

机译:新型氧化铝纳米纤维过滤器去除和保留病毒气溶胶

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Nanomaterial, due to its unique physical, chemical and biological properties compared to its bulk counterparts, has the potential to provide a product superior to its bulk predecessor. In this study, a novel alumina nanofiber filter was assessed for its removal and retention capability for MS2 aerosol. Its physical removal efficiency in the 10-400 nm range was 94.35%, while its viable removal efficiency was 98.87%, which was slightly lower than three conventional HEPA filters tested. However, its pressure drop was much lower than HEPA filters, yielding a higher filter quality than HEPA filters. The average extracted fraction from the nanofiber filter was 8.64x10~(-2) ± 7.00x10~(-2), which is three orders lower than other HEPA filters, demonstrating that the viruses were effectively retained in the nanofiber filter. Furthermore, the performance of the nanofiber filter showed no dependence on relative humidity. In conclusion, this novel alumina nanofiber filter presents advantageous potential for removal and retention of viral aerosol agents.
机译:纳米材料由于与大批量同类产品相比具有独特的物理,化学和生物学特性,因此有潜力提供优于大批量产品的产品。在这项研究中,评估了新型氧化铝纳米纤维过滤器对MS2气溶胶的去除和保留能力。它在10-400 nm范围内的物理去除效率为94.35%,而可行的去除效率为98.87%,略低于测试的三种常规HEPA过滤器。但是,它的压降比HEPA过滤器低得多,因此比HEPA过滤器具有更高的过滤质量。从纳米纤维过滤器中提取的平均分数为8.64x10〜(-2)±7.00x10〜(-2),比其他HEPA过滤器低3个数量级,表明病毒有效地保留在纳米纤维过滤器中。此外,纳米纤维过滤器的性能不依赖于相对湿度。总之,这种新颖的氧化铝纳米纤维过滤器具有去除和保留病毒气雾剂的有利潜力。

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