发射率
材料科学
面罩
电子设备和系统的热管理
热辐射
热红外
辐射热
热舒适性
辐射冷却
面子(社会学概念)
辐射传输
热的
光学
环境科学
复合材料
光电子学
红外线的
机械工程
气象学
2019年冠状病毒病(COVID-19)
物理
工程类
社会学
热力学
医学
疾病
病理
传染病(医学专业)
社会科学
作者
Yuanqiang Xu,Xiaomin Zhang,Tienan Zhao,Ying Li,Yu Zhang,Hui Huang,Yongchun Zeng
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-04-04
卷期号:24 (15): 4462-4470
标识
DOI:10.1021/acs.nanolett.4c00308
摘要
Micro/nanofiber-based face masks are recommended as personal protective equipment (PPE) against particulate matter (PM), especially PM0.3. Ensuring thermal comfort in daily use face masks is essential in many situations. Here, radiative thermal management is introduced into face masks to elevate the user comfort. An interlayered poly(lactic acid) (PLA) micro/nanofibrous filter effectively captures PM0.3 (99.69%) with minimal pressure drop (49 Pa). Thermal regulation is accomplished by controlling the mid-infrared (MIR) emissivity of the face mask's outer surface. Cooling face masks feature cotton nonwovens with high MIR emissivity (90.7%) for heat dissipation, while warming face masks utilize perforated Al/PE films with minimal MIR emissivity (10.7%) for warmth retention. Skin temperature measurements indicate that the skin covered by the cooling face mask could be 1.1 °C lower than that covered by the 3M face mask, while the skin covered by the warming face mask could be 1.3 °C higher than that covered by the 3M face mask.
科研通智能强力驱动
Strongly Powered by AbleSci AI