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Effectiveness of Common Fabrics to Block Aqueous Aerosols of Virus-like Nanoparticles

机译:常用织物阻断病毒样纳米颗粒水溶液的有效性

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Layered systems of commonly available fabric materials can be used by the public and healthcare providers in face masks to reduce the risk of inhaling viruses with protection that is about equivalent to or better than the filtration and adsorption offered by 5-layer N95 respirators. Over 70 different common fabric combinations and masks were evaluated under steady-state, forced convection air flux with pulsed aerosols that simulate forceful respiration. The aerosols contain fluorescent virus-like nanoparticles to track transmission through materials that greatly assist the accuracy of detection, thus avoiding artifacts including pore flooding and the loss of aerosol due to evaporation and droplet breakup. Effective materials comprise both absorbent, hydrophilic layers and barrier, hydrophobic layers. Although the hydrophobic layers can adhere virus-like nanoparticles, they may also repel droplets from adjacent absorbent layers and prevent wicking transport across the fabric system. Effective designs are noted with absorbent layers comprising terry cloth towel, quilting cotton, and flannel. Effective designs are noted with barrier layers comprising nonwoven polypropylene, polyester, and polyaramid.
机译:公共和医疗保健提供者的常用织物材料的分层系统可以在面部面膜中使用,以降低与5层N95呼吸器提供的过滤和吸附的保护吸入病毒的风险。在稳态下评估超过70种不同的常见织物组合和掩模,具有模拟有力呼吸的脉冲气溶胶的强制对流空气通量。气溶胶含有荧光病毒样纳米颗粒,以跟踪通过极大地辅助检测精度的材料的传动,从而避免包括孔溢出的伪影和由于蒸发和液滴断裂而导致的气溶胶损失。有效材料包括吸收剂,亲水层和屏障,疏水层。虽然疏水层可以粘附有病毒样纳米颗粒,但是它们也可以从相邻的吸收层释放液滴,并防止穿过织物系统的芯吸转运。使用毛巾毛巾,绗缝棉和法兰绒的吸收层注意到有效的设计。屏障层,包括非织造聚丙烯,聚酯和聚摩沙氨酰胺的阻挡层。

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