4.3 Article

Transparent PAN:TiO2 and PAN-co-PMA:TiO2 Nanofiber Composite Membranes with High Efficiency in Particulate Matter Pollutants Filtration

Journal

NANOSCALE RESEARCH LETTERS
Volume 15, Issue 1, Pages -

Publisher

SPRINGER
DOI: 10.1186/s11671-019-3225-2

Keywords

Particulate matter (PM) pollution; Aerosol filtration; Electrospinning; Nanofiber membrane

Funding

  1. Key Field R&D Program of Guangdong Province [2019B010941001]
  2. Natural Science Foundation of Guangdong Province China [2018A0303100022]
  3. Dongguan Social Science and Technology Development Project [20185071631280]
  4. China Postdoctoral Science Foundation [2018M630949]
  5. Central University Scientific Research Project [2017BQ051]

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Particulate matter is one of the main pollutants, causing hazy days, and it has been serious concern for public health worldwide, particularly in China recently. Quality of outdoor atmosphere with a pollutant emission of PM2.5 is hard to be controlled; but the quality of indoor air could be achieved by using fibrous membrane-based air-filtering devices. Herein, we introduce nanofiber membranes for both indoor and outdoor air protection by electrospun synthesized polyacrylonitrile:TiO2 and developed polyacrylonitrile-co-polyacrylate:TiO2 composite nanofiber membranes. In this study, we design both polyacrylonitrile:TiO2 and polyacrylonitrile-co-polyacrylate:TiO2 nanofiber membranes with controlling the nanofiber diameter and membrane thickness and enable strong particulate matter adhesion to increase the absorptive performance and by synthesizing the specific microstructure of different layers of nanofiber membranes. Our study shows that the developed polyacrylonitrile-co-polyacrylate:TiO2 nanofiber membrane achieves highly effective (99.95% removal of PM2.5) under extreme hazy air-quality conditions (PM2.5 mass concentration 1 mg/m(3)). Moreover, the experimental simulation of the test in 1 cm(3) air storehouse shows that the polyacrylonitrile-co-polyacrylate:TiO2 nanofiber membrane (1 g/m(2)) has the excellent PM 2.5 removal efficiency of 99.99% in 30 min.

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