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Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)

Particulate matter 2.5 (PM(2.5)) has become a public hazard to people’s lives and health. Traditional melt-blown membranes cannot filter dangerous particles due to their limited diameter, and ultra-fine electrospinning fibers are vulnerable to external forces. Therefore, creating highly efficient ai...

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Autores principales: Li, Ting-Ting, Fan, Yujia, Cen, Xixi, Wang, Yi, Shiu, Bing-Chiuan, Ren, Hai-Tao, Peng, Hao-Kai, Jiang, Qian, Lou, Ching-Wen, Lin, Jia-Horng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7602219/
https://www.ncbi.nlm.nih.gov/pubmed/33066527
http://dx.doi.org/10.3390/nano10102025
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author Li, Ting-Ting
Fan, Yujia
Cen, Xixi
Wang, Yi
Shiu, Bing-Chiuan
Ren, Hai-Tao
Peng, Hao-Kai
Jiang, Qian
Lou, Ching-Wen
Lin, Jia-Horng
author_facet Li, Ting-Ting
Fan, Yujia
Cen, Xixi
Wang, Yi
Shiu, Bing-Chiuan
Ren, Hai-Tao
Peng, Hao-Kai
Jiang, Qian
Lou, Ching-Wen
Lin, Jia-Horng
author_sort Li, Ting-Ting
collection PubMed
description Particulate matter 2.5 (PM(2.5)) has become a public hazard to people’s lives and health. Traditional melt-blown membranes cannot filter dangerous particles due to their limited diameter, and ultra-fine electrospinning fibers are vulnerable to external forces. Therefore, creating highly efficient air filters by using an innovative technique and structure has become necessary. In this study, a combination of polypropylene (PP) melt-blown and polyvinyl alcohol (PVA)/zeolite imidazole frameworks-8 (ZIF-8) electrospinning technique is employed to construct a PP/PVA/ZIF-8 membrane with a hierarchical fibrous structure. The synergistic effect of hierarchical fibrous structure and ZIF-8 effectively captures PM(2.5). The PP/PVA composite membrane loaded with 2.5% loading ZIF-8 has an average filtration efficacy reaching as high as 96.5% for PM(2.5) and quality factor (Q(f)) of 0.099 Pa(−1). The resultant membrane resists 33.34 N tensile strength and has a low pressure drop, excellent filtration efficiency, and mechanical strength. This work presents a facile preparation method that is suitable for mass production and the application of membranes to be used as air filters for highly efficient filtration of PM(2.5).
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spelling pubmed-76022192020-11-01 Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5) Li, Ting-Ting Fan, Yujia Cen, Xixi Wang, Yi Shiu, Bing-Chiuan Ren, Hai-Tao Peng, Hao-Kai Jiang, Qian Lou, Ching-Wen Lin, Jia-Horng Nanomaterials (Basel) Article Particulate matter 2.5 (PM(2.5)) has become a public hazard to people’s lives and health. Traditional melt-blown membranes cannot filter dangerous particles due to their limited diameter, and ultra-fine electrospinning fibers are vulnerable to external forces. Therefore, creating highly efficient air filters by using an innovative technique and structure has become necessary. In this study, a combination of polypropylene (PP) melt-blown and polyvinyl alcohol (PVA)/zeolite imidazole frameworks-8 (ZIF-8) electrospinning technique is employed to construct a PP/PVA/ZIF-8 membrane with a hierarchical fibrous structure. The synergistic effect of hierarchical fibrous structure and ZIF-8 effectively captures PM(2.5). The PP/PVA composite membrane loaded with 2.5% loading ZIF-8 has an average filtration efficacy reaching as high as 96.5% for PM(2.5) and quality factor (Q(f)) of 0.099 Pa(−1). The resultant membrane resists 33.34 N tensile strength and has a low pressure drop, excellent filtration efficiency, and mechanical strength. This work presents a facile preparation method that is suitable for mass production and the application of membranes to be used as air filters for highly efficient filtration of PM(2.5). MDPI 2020-10-14 /pmc/articles/PMC7602219/ /pubmed/33066527 http://dx.doi.org/10.3390/nano10102025 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Ting-Ting
Fan, Yujia
Cen, Xixi
Wang, Yi
Shiu, Bing-Chiuan
Ren, Hai-Tao
Peng, Hao-Kai
Jiang, Qian
Lou, Ching-Wen
Lin, Jia-Horng
Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title_full Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title_fullStr Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title_full_unstemmed Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title_short Polypropylene/Polyvinyl Alcohol/Metal-Organic Framework-Based Melt-Blown Electrospun Composite Membranes for Highly Efficient Filtration of PM(2.5)
title_sort polypropylene/polyvinyl alcohol/metal-organic framework-based melt-blown electrospun composite membranes for highly efficient filtration of pm(2.5)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7602219/
https://www.ncbi.nlm.nih.gov/pubmed/33066527
http://dx.doi.org/10.3390/nano10102025
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