Department of Public Health, Erasmus MC, University Medical Center Rotterdam, Rotterdam, the Netherlands; The Municipal Public Health Service Rotterdam-Rijnmond, Rotterdam, the Netherlands.
Delft University of Technology, Department of BioMechanical Engineering, Delft, the Netherlands; Van Straten Medical, De Meern, the Netherlands.
J Hosp Infect. 2020 Oct;106(2):246-253. doi: 10.1016/j.jhin.2020.07.024. Epub 2020 Aug 5.
There is a worldwide shortage of medical-grade face masks. Donning masks can play an important role in curbing the spread of SARS-CoV-2.
To conclude whether there is an effective mask for the population to wear in public that could easily be made during a medical face mask shortage using readily available materials.
We determined the effectiveness of readily available materials and models for making a face mask. The outcomes were compared with N95/FFP2/KN95 masks that entered the Netherlands in April-May 2020. Masks were tested to determine whether they filtered a minimum of 35% of 0.3-μm particles, are hydrophobic, seal on the face, are breathable, and can be washed.
Fourteen of the 25 (combinations of) materials filtered at least 35% of 0.3-μm particles. Four of the materials proved hydrophobic, all commercially manufactured filters. Two models sealed the face. Twenty-two of the 25 materials were breathable at <0.7 mbar. None of the hydrophobic materials stayed intact after washing.
It would be possible to reduce the reproduction rate of SARS-CoV-2 from 2.4 to below one if 39% of the population would wear a mask made from ePM₁ 85% commercially manufactured filter fabric and in a duckbill form. This mask performs better than 80% of the imported N95/FFP2/KN95 masks and provides a better fit than a surgical mask. Two layers of quilt fabric with a household paper towel as filter is also a viable choice for protecting the user and the environment.
全球范围内医用口罩短缺。佩戴口罩可以在遏制 SARS-CoV-2 传播方面发挥重要作用。
确定在医用口罩短缺期间,是否有一种易于制作的、适合公众佩戴的有效口罩,且口罩材料易于获得。
我们确定了现成材料和口罩制作模型的有效性。将结果与 2020 年 4 月至 5 月进入荷兰的 N95/FFP2/KN95 口罩进行比较。测试口罩是否能过滤至少 35%的 0.3-μm 颗粒、是否疏水、是否能贴合面部、是否透气以及是否可以清洗。
25 种(组合)材料中有 14 种过滤了至少 35%的 0.3-μm 颗粒。4 种材料表现出疏水性,均为商业制造的过滤器。两种模型都能贴合面部。25 种材料中有 22 种在<0.7 毫巴时具有透气性。经过清洗后,没有一种疏水材料能保持完整。
如果 39%的人佩戴由 ePM₁ 85%商业制造过滤织物制成的鸭嘴式口罩,SARS-CoV-2 的繁殖率可从 2.4 降低到 1 以下。这种口罩的性能优于 80%的进口 N95/FFP2/KN95 口罩,且比医用口罩更贴合面部。两层绗缝织物加一层家用纸巾作为过滤器也是保护使用者和环境的一种可行选择。