The performance of masks with both nanofiber filters and melt-blown filters, after being sprayed with ethanol or dipping in it, was found to be efficacious, rendering them reusable.
Spraying used masks with ethanol three or more times or dipping masks in ethanol solution for more than five minutes, help to effectively inhibit the pathogens that can remain inside the mask filter. This helps to reduce wastage and increases the reusability of masks. Masks have become essential as the COVID-19 pandemic continues to spread around the world. They are the first line of defense against the viruses and germs entering the body via droplets in the air.
‘The filtration efficiency of both nanofiber filters and melt-blown filters used in masks, in its first usage after cleaning with ethanol, was measured at 95% and above, indicating efficient protection of the wearer's respiratory system.’
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The performance and functional differences of filters used in masks after they have been cleaned with ethanol was analysed by a team of researchers from Korea and Japan.Read More..
Professor Hyung Joon Cha and doctoral candidates Jaeyun Lee and Yeonsu Jeong of the Department of Chemical Engineering at POSTECH and Professor Ick-Soo Kim and doctoral candidates Sana Ullah and Azeem Ullah of Shinshu University in Japan have been jointly analyzing the filtration efficiency, airflow rate, surface and morphological properties of the mask filters after they undergo cleaning treatments.
The research team verified the results using two types of cleaning procedures: First one was spraying 75% ethanol on the mask filter then air drying it, second was to saturate the filter in a 75% ethanol solution then air drying it.
A study of the melt-blown filters commonly used in N95 masks and the nanofiber filters produced by electrospinning found that just by spraying ethanol three or more times on the two materials or dipping them in the ethanol solution for more than five minutes effectively inhibit pathogens that can remain inside the mask filter.
The filtration efficiency of both materials in its first usage was measured at 95% and above, indicating that the wearer's respiratory system is effectively protected. It was also confirmed that surface of both materials do not allow water to adhere well, sufficiently hindering wetting by moisture or saliva (droplets).
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The joint research team attributed this difference to the decrease in static electricity in the filters after cleaning. Melt-blown filters rely in part on the electrostatic effect of the surface when filtering particles. However, nanofiber does not rely on static electricity but filters according to the morphological properties and pore size of the surface, and is not deformed by ethanol.
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In summary, both mask filters have similar filtration performance in its initial use, but only nanofiber filters can be reused multiple times through a simple ethanol cleaning process.
POSTECH Professor Hyung Joon Cha explained the significance of the research by commenting, "This research is an experiment that has verified the biosafety of nanofiber masks - which have recently become a hot issue - and their ability to maintain filtration efficiency after cleaning."
In addition, Professor Ick-Soo Kim of Shinshu University added, "I hope the nanofiber masks will help everyone as a means of preventing contagion in the possible second or third wave of COVID-19.
Source-Eurekalert