Thermal Management in Nanofiber-Based Face Mask
Тепловое управление в лицевой маске на основе нан волокон
2017-05-15
SCID: 54.1/6k4dafyy
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infrared reflectancenanofiber-based face maskparticulate matter captureradiative coolingthermal management
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Abstract (AI)
Face masks are widely used to filter airborne pollutants, especially when particulate matter (PM) pollution has become a serious concern to public health. Here, the concept of thermal management is introduced into face masks for the first time to enhance the thermal comfort of the user. A system of nanofiber on nanoporous polyethylene (fiber/nanoPE) is developed where the nanofibers with strong PM adhesion ensure high PM capture efficiency (99.6% for PM 2.5 ) with low pressure drop and the nanoPE substrate with high-infrared (IR) transparency (92.1%, weighted based on human body radiation) results in effective radiative cooling. We further demonstrate that by coating nanoPE with a layer of Ag, the fiber/Ag/nanoPE mask shows a high IR reflectance (87.0%) and can be used for warming purposes. These multifunctional face mask designs can be explored for both outdoor and indoor applications to protect people from PM pollutants and simultaneously achieve personal thermal comfort.
Key Findings
1
A nanofiber-on-nanoporous-polyethylene (fiber/nanoPE) mask integrates particulate filtration with personal thermal management.
2
Adding an Ag coating produces a fiber/Ag/nanoPE mask with 87.0% infrared reflectance for warming applications.
3
Strong nanofiber particulate adhesion achieves 99.6% PM2.5 capture efficiency while maintaining a low pressure drop.
4
The multifunctional masks are designed to protect against particulate pollution while improving thermal comfort indoors and outdoors.
5
The nanoPE substrate provides 92.1% human-body-radiation-weighted infrared transparency, enabling effective radiative cooling.
Research Object
nanofiber-based face masks incorporating nanoporous polyethylene (fiber/nanoPE and fiber/Ag/nanoPE systems)
Research Subject
particulate-matter filtration performance and radiative thermal management, including cooling and warming for personal thermal comfort
Publication Details
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2017-05-15
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