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Study on Filtration Performance of PVDF/PUL Composite Air Filtration Membrane Based on Far-Field Electrospinning

Han Wang, Yiliang Bao, Xiuding Yang, Xingzi Lan, Jian Wen Guo, Yiliang Pan, Weimin Huang, Linjun Tang, Zhifeng Luo, Bei Zhou, Jingsong Yao, Xun Chen

2022Polymers28 citationsDOIOpen Access PDF

Abstract

At present, the situation of air pollution is still serious, and research on air filtration is still crucial. For the nanofiber air filtration membrane, the diameter, porosity, tensile strength, and hydrophilicity of the nanofiber will affect the filtration performance and stability. In this paper, based on the far-field electrospinning process and the performance effect mechanism of the stacked structure fiber membrane, nanofiber membrane was prepared by selecting the environmental protection, degradable and pollution-free natural polysaccharide biopolymer pullulan, and polyvinylidene fluoride polymer with strong hydrophobicity and high impact strength. By combining two kinds of fiber membranes with different fiber diameter and porosity, a three-layer composite nanofiber membrane with better hydrophobicity, higher tensile strength, smaller fiber diameter, and better filtration performance was prepared. Performance characterization showed that this three-layer composite nanofiber membrane had excellent air permeability and filtration efficiency, and the filtration efficiency of particles above PM 2.5 reached 99.9%. This study also provides important reference values for the preparation of high-efficiency composite nanofiber filtration membrane.

Topics & Concepts

Materials scienceElectrospinningPolyvinylidene fluorideNanofiberMembraneAir permeability specific surfaceFiltration (mathematics)Composite materialUltimate tensile strengthComposite numberPorosityFiberChemical engineeringPolymerLayer (electronics)ChemistryBiochemistryEngineeringMathematicsStatisticsElectrospun Nanofibers in Biomedical ApplicationsAdvanced Sensor and Energy Harvesting MaterialsAerosol Filtration and Electrostatic Precipitation
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