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有效改善室内空气质量的金属有机骨架纳米纤维过滤器
2019/12/1 13:26:34 易丝帮

  Metal-Organic Framework-Based Nanofiber Filters for Effective Indoor Air Quality Control

近日,香港中文大学陈春老师课题组通过静电纺丝技术构建了ZIF-67@PAN纳米纤维过滤器,表现出高效的PM2.5和甲醛去除率。

  Indoor air quality is essential to public health as people spend most of their time indoors. Hence, effective indoor air filtering is under heavy demand to deal with this challenge. Metal-organic frameworks (MOFs) have been demonstrated as suitable candidates for air pollution control because of their unique properties, such as large surface area and rich functionalities. The integration of MOFs into an organic polymer matrix is considered to be an effective method to control air pollution; however, an efficient and low-cost method to fabricate such filters is still lacking. Herein, an immersion method was proposed for embedding the homogenous growth of MOFs into nanofibers with a superior capability of wind resistance without film failure. The prepared MOFs-filter shows effective PM2.5 and formaldehyde removal. The PM2.5 filtration efficiency increased from 74.5% to 87.2% after integrating ZIF-67 nanocrystals into the electrospun PAN nanofibers. Moreover, the PM2.5 filtration efficiency remain more than 99% during a long-term test over 30 days. The ZIF-67@PAN filter also achieves a formaldehyde removal efficiency of 84%. This work not only proposes a scalable, and lowcost method for fabricating flexible MOF-nanofiber filters but also holds great promise for improving indoor air quality and reducing the associated health risks.

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