Department of Material Science, Institute of Polymer Materials, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Bavaria, Germany.
Fiatec-Filter- und Aerosoltechnologie GmbH, Mainleus, Bavaria, Germany.
PLoS One. 2023 Sep 21;18(9):e0291679. doi: 10.1371/journal.pone.0291679. eCollection 2023.
To allow an efficient protection against viruses like the severe acute respiratory syndrome coronavirus type 2 (SARS-CoV-2), it is important to avoid their spreading by using filtering face pieces (FFP), which are categorized by different standards according to their filtration efficiency. In this study, we subjected six brands of FFP2 standard masks to three different conditions and subsequently analysed them for their filtration performance to evaluate potentials for reusability. The conditions comprised changes of temperature and air humidity, an exposure to isopropyl alcohol (IPA) and an autoclave sterilization. While four of six masks consisted of electrostatically treated melt blown non-wovens, two masks were fabricated using a nanofibrous multilayer system. Due to the absence of prior electrostatic treatment, the nano-masks did not show a significant change in filtration efficiency when discharged by IPA, unlike the melt blown nonwoven masks showing a significant decrease of filtration efficiency down to around 50% at a particle size of 0.3 μm. However, most melt blown masks maintained a sufficient filtration efficiency after all other treatments with even better results than the nanofibrous masks. This was particularly the case for the capacity to filter smallest particles/droplets with a size of around 0.1 μm, which is below the range of typical filtering standards and important for the retention of virally contaminated nano-aerosols or unattached viruses. After temperature/humidity variation and autoclave sterilization, melt blown masks were able to retain a filtration efficiency up to over 90% at 0.1 μm contrary to nano-masks showing a decrease down to around 70%. Based on their better filtration performance, lower price and potential reusability, we conclude that electret melt blown masks are the preferable type of FFP2 masks.
为了有效防止严重急性呼吸系统综合征冠状病毒 2 型(SARS-CoV-2)等病毒的传播,使用过滤面罩(FFP)避免其传播非常重要,这些过滤面罩根据其过滤效率按照不同标准进行分类。在这项研究中,我们对六种 FFP2 标准口罩进行了三种不同条件的处理,随后分析了它们的过滤性能,以评估其重复使用的潜力。这些条件包括温度和空气湿度的变化、异丙醇(IPA)暴露和高压灭菌。虽然六种口罩中有四种由经过静电处理的熔喷无纺材料制成,但有两种口罩是使用纳米纤维多层系统制造的。由于缺乏事先的静电处理,纳米口罩在被 IPA 放电时,过滤效率没有明显变化,而熔喷无纺口罩的过滤效率则明显下降,在 0.3 μm 的粒径下下降到 50%左右。然而,大多数熔喷口罩在所有其他处理后都保持了足够的过滤效率,甚至比纳米纤维口罩的结果更好。对于过滤最小颗粒/液滴(粒径约为 0.1 μm)的能力尤其如此,这低于典型过滤标准的范围,对于保留含有病毒的纳米气溶胶或游离病毒非常重要。在温度/湿度变化和高压灭菌后,熔喷口罩在 0.1 μm 处的过滤效率能够保持在 90%以上,而纳米口罩的过滤效率则下降到 70%左右。基于其更好的过滤性能、更低的价格和潜在的可重复使用性,我们得出结论,驻极体熔喷口罩是 FFP2 口罩的首选类型。