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Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards

During the global spread of COVID‐19, high demand and limited availability of melt‐blown filtration material led to a manufacturing backlog of N95 Filtering Facepiece Respirators (FFRs). This shortfall prompted the search for alternative filter materials that could be quickly mass produced while mee...

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Autores principales: Jensen, Madeline G., O'Shaughnessy, Patrick T., Shaffer, Marlee, Yu, Sooyoun, Choi, Yun Young, Christiansen, Megan, Stanier, Charles O., Hartley, Michael, Huddle, Joey, Johnson, Jed, Bibby, Kyle, Myung, Nosang V., Cwiertny, David M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078598/
https://www.ncbi.nlm.nih.gov/pubmed/37034442
http://dx.doi.org/10.1002/app.53406
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author Jensen, Madeline G.
O'Shaughnessy, Patrick T.
Shaffer, Marlee
Yu, Sooyoun
Choi, Yun Young
Christiansen, Megan
Stanier, Charles O.
Hartley, Michael
Huddle, Joey
Johnson, Jed
Bibby, Kyle
Myung, Nosang V.
Cwiertny, David M.
author_facet Jensen, Madeline G.
O'Shaughnessy, Patrick T.
Shaffer, Marlee
Yu, Sooyoun
Choi, Yun Young
Christiansen, Megan
Stanier, Charles O.
Hartley, Michael
Huddle, Joey
Johnson, Jed
Bibby, Kyle
Myung, Nosang V.
Cwiertny, David M.
author_sort Jensen, Madeline G.
collection PubMed
description During the global spread of COVID‐19, high demand and limited availability of melt‐blown filtration material led to a manufacturing backlog of N95 Filtering Facepiece Respirators (FFRs). This shortfall prompted the search for alternative filter materials that could be quickly mass produced while meeting N95 FFR filtration and breathability performance standards. Here, an unsupported, nonwoven layer of uncharged polystyrene (PS) microfibers was produced via electrospinning that achieves N95 performance standards based on physical parameters (e.g., filter thickness) alone. PS microfibers 3–6 μm in diameter and deposited in an ~5 mm thick filter layer are favorable for use in FFRs, achieving high filtration efficiencies (≥97.5%) and low pressure drops (≤15 mm H(2)O). The PS microfiber filter demonstrates durability upon disinfection with hydroxyl radicals (•OH), maintaining high filtration efficiencies and low pressure drops over six rounds of disinfection. Additionally, the PS microfibers exhibit antibacterial activity (1‐log removal of E. coli) and can be modified readily through integration of silver nanoparticles (AgNPs) during electrospinning to enhance their activity (≥3‐log removal at 25 wt% AgNP integration). Because of their tunable performance, potential reusability with disinfection, and antimicrobial properties, these electrospun PS microfibers may represent a suitable, alternative filter material for use in N95 FFRs.
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spelling pubmed-100785982023-04-07 Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards Jensen, Madeline G. O'Shaughnessy, Patrick T. Shaffer, Marlee Yu, Sooyoun Choi, Yun Young Christiansen, Megan Stanier, Charles O. Hartley, Michael Huddle, Joey Johnson, Jed Bibby, Kyle Myung, Nosang V. Cwiertny, David M. J Appl Polym Sci Research Articles During the global spread of COVID‐19, high demand and limited availability of melt‐blown filtration material led to a manufacturing backlog of N95 Filtering Facepiece Respirators (FFRs). This shortfall prompted the search for alternative filter materials that could be quickly mass produced while meeting N95 FFR filtration and breathability performance standards. Here, an unsupported, nonwoven layer of uncharged polystyrene (PS) microfibers was produced via electrospinning that achieves N95 performance standards based on physical parameters (e.g., filter thickness) alone. PS microfibers 3–6 μm in diameter and deposited in an ~5 mm thick filter layer are favorable for use in FFRs, achieving high filtration efficiencies (≥97.5%) and low pressure drops (≤15 mm H(2)O). The PS microfiber filter demonstrates durability upon disinfection with hydroxyl radicals (•OH), maintaining high filtration efficiencies and low pressure drops over six rounds of disinfection. Additionally, the PS microfibers exhibit antibacterial activity (1‐log removal of E. coli) and can be modified readily through integration of silver nanoparticles (AgNPs) during electrospinning to enhance their activity (≥3‐log removal at 25 wt% AgNP integration). Because of their tunable performance, potential reusability with disinfection, and antimicrobial properties, these electrospun PS microfibers may represent a suitable, alternative filter material for use in N95 FFRs. John Wiley & Sons, Inc. 2022-11-21 2023-02-05 /pmc/articles/PMC10078598/ /pubmed/37034442 http://dx.doi.org/10.1002/app.53406 Text en © 2022 The Authors. Journal of Applied Polymer Science published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Jensen, Madeline G.
O'Shaughnessy, Patrick T.
Shaffer, Marlee
Yu, Sooyoun
Choi, Yun Young
Christiansen, Megan
Stanier, Charles O.
Hartley, Michael
Huddle, Joey
Johnson, Jed
Bibby, Kyle
Myung, Nosang V.
Cwiertny, David M.
Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title_full Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title_fullStr Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title_full_unstemmed Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title_short Simple fabrication of an electrospun polystyrene microfiber filter that meets N95 filtering facepiece respirator filtration and breathability standards
title_sort simple fabrication of an electrospun polystyrene microfiber filter that meets n95 filtering facepiece respirator filtration and breathability standards
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078598/
https://www.ncbi.nlm.nih.gov/pubmed/37034442
http://dx.doi.org/10.1002/app.53406
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