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Micro/nanofibrous nonwovens with high filtration performance and radiative heat dissipation property for personal protective face mask.


ABSTRACT: The COVID-19 pandemic and airborne particulate matter (PM) pollution have posed a great threat to human health. Personal protective face masks have become an indispensable protective equipment in our daily lives. However, wearing conventional face masks for a long time cause swelter and discomfort on the face. Introducing thermal comfort into personal protective face masks becomes desirable. Herein, face masks that show excellent filtration performance and radiative heat dissipation effect are successfully designed and prepared by electrospining Nylon-6 (PA) nanofibers onto polyethylene (PE) meltblown nonwovens. The resultant PE/PA nonwovens have high PM filtration efficiency (>99%) with a low pressure drop (<100 Pa). Moreover, taking the advantage of the property of PE, the designed face mask posses high mid-infrared (mid-IR) transmittance and brings about high radiative cooling power, resulting in effective heat dissipation performance. This face mask design may provides new insights into the development of thermal comfort materials for personal protection.

SUBMITTER: Xu Y 

PROVIDER: S-EPMC8523218 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Micro/nanofibrous nonwovens with high filtration performance and radiative heat dissipation property for personal protective face mask.

Xu Yuanqiang Y   Zhang Xiaomin X   Hao Xibo X   Teng Defang D   Zhao Tienan T   Zeng Yongchun Y  

Chemical engineering journal (Lausanne, Switzerland : 1996) 20210505


The COVID-19 pandemic and airborne particulate matter (PM) pollution have posed a great threat to human health. Personal protective face masks have become an indispensable protective equipment in our daily lives. However, wearing conventional face masks for a long time cause swelter and discomfort on the face. Introducing thermal comfort into personal protective face masks becomes desirable. Herein, face masks that show excellent filtration performance and radiative heat dissipation effect are s  ...[more]

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