Potisk Tilen, Remškar Maja, Pirker Luka, Filipič Gregor, Mihelič Igor, Ješelnik Marjan, Čoko Urban, Ravnik Miha
Laboratory for Molecular Modeling, National Institute of Chemistry, SI-1001 Ljubljana, Slovenia.
Faculty of Mathematics and Physics, University of Ljubljana, SI-1001 Ljubljana, Slovenia.
ACS Appl Nano Mater. 2023 Aug 22;6(17):15807-15819. doi: 10.1021/acsanm.3c02592. eCollection 2023 Sep 8.
In this work, we demonstrate selected optimization changes in the simple design of filtration masks to increase particle removal efficiency (PRE) and filter quality factor by combining experiments and numerical modeling. In particular, we focus on single-layer filters fabricated from uniform thickness fibers and double-layer filters consisting of a layer of highly permeable thick fibers as a support and a thin layer of filtering electrospun nanofibers. For single-layer filters, we demonstrate performance improvement in terms of the quality factor by optimizing the geometry of the composition. We show significantly better PRE performance for filters composed of micrometer-sized fibers covered by a thin layer of electrospun nanofibers. This work is motivated and carried out in collaboration with a targeted industrial development of selected melamine-based filter nano- and micromaterials.
在这项工作中,我们通过结合实验和数值模拟,展示了在过滤口罩的简单设计中进行的特定优化更改,以提高颗粒去除效率(PRE)和过滤品质因数。具体而言,我们专注于由均匀厚度纤维制成的单层过滤器,以及由一层高渗透性粗纤维作为支撑层和一层过滤电纺纳米纤维组成的双层过滤器。对于单层过滤器,我们通过优化组成的几何形状展示了品质因数方面的性能提升。我们还展示了由微米级纤维覆盖一层薄电纺纳米纤维组成的过滤器具有显著更好的PRE性能。这项工作是受选定的三聚氰胺基过滤纳米和微米材料的目标工业开发的推动并与之合作开展的。