One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks
Polyethylene glycol (PEG) was inserted into polypropylene (PP) in one-step melt blowing process to strengthen the filtration quality of the melt-blown nonwovens. The micro-nanofiber nonwovens with branch structure were fabricated by controlling the ratio of PEG in blend and process parameters in mel...
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doaj-506df38b109a4981a096111c6af6c8f72020-11-25T00:13:55ZengElsevierResults in Physics2211-37972019-03-011214211428One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networksHeng Zhang0Qi Zhen1Yong Liu2Rangtong Liu3Yifeng Zhang4College of Textiles, Zhongyuan University of Technology, 41 Zhongyuan Road, Zhengzhou, Henan Province 450007, ChinaCollege of Clothing, Zhongyuan University of Technology, 41 Zhongyuan Road, Zhengzhou, Henan Province 450007, ChinaKey Laboratory of Advanced Textile Composites, Ministry of Education, School of Textiles, Tianjin Polytechnic University, 399 West Binshui Road, Tianjin 300387, China; School of Textile Science and Engineering, Tianjin Polytechnic University, 399 Binshui Xilu Road, Tianjin 300387, China; Corresponding author at: Key Laboratory of Advanced Textile Composites, Ministry of Education, School of Textiles, Tianjin Polytechnic University, 399 West Binshui Road, Tianjin 300387, China.College of Clothing, Zhongyuan University of Technology, 41 Zhongyuan Road, Zhengzhou, Henan Province 450007, ChinaCollege of Textiles, Zhongyuan University of Technology, 41 Zhongyuan Road, Zhengzhou, Henan Province 450007, ChinaPolyethylene glycol (PEG) was inserted into polypropylene (PP) in one-step melt blowing process to strengthen the filtration quality of the melt-blown nonwovens. The micro-nanofiber nonwovens with branch structure were fabricated by controlling the ratio of PEG in blend and process parameters in melt blowing process. The results showed that nanofibers with the diameter range of less than 800 nm were interspersed among microfibers, which demonstrated the laminated structure in thickness direction and quasi-continuous branch structure in horizontal direction. Furthermore, as the PEG ratio increasing from 0% to 15%, the ratio of fibers with diameter of <800 nm and the fibers with diameter of >1500 nm increased from 37.50% to 231.82%. The filtration efficiency of the nonwovens followed typical behavior for the particles of 0.26 μm at air velocities of 0.05–0.142 m/s. The quality factor displayed an escalating trend with the increase of PEG ratio from 0% to 12% and achieved a maximum value of 0.02614 Pa−1 at the airflow rate of 0.053 m/s. Furthermore, the mechanism of formation of branch networks in nonwovens and its filter efficiency were discussed in detail. This work provides the feasibility of fast preparation of micro-nanofiber nonwovens with branch networks under high effective air filtration. Keywords: Nonwoven, Porous materials, Embedded, Air filtration, Micro-nanofiberhttp://www.sciencedirect.com/science/article/pii/S2211379718330857 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Heng Zhang Qi Zhen Yong Liu Rangtong Liu Yifeng Zhang |
spellingShingle |
Heng Zhang Qi Zhen Yong Liu Rangtong Liu Yifeng Zhang One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks Results in Physics |
author_facet |
Heng Zhang Qi Zhen Yong Liu Rangtong Liu Yifeng Zhang |
author_sort |
Heng Zhang |
title |
One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks |
title_short |
One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks |
title_full |
One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks |
title_fullStr |
One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks |
title_full_unstemmed |
One-step melt blowing process for PP/PEG micro-nanofiber filters with branch networks |
title_sort |
one-step melt blowing process for pp/peg micro-nanofiber filters with branch networks |
publisher |
Elsevier |
series |
Results in Physics |
issn |
2211-3797 |
publishDate |
2019-03-01 |
description |
Polyethylene glycol (PEG) was inserted into polypropylene (PP) in one-step melt blowing process to strengthen the filtration quality of the melt-blown nonwovens. The micro-nanofiber nonwovens with branch structure were fabricated by controlling the ratio of PEG in blend and process parameters in melt blowing process. The results showed that nanofibers with the diameter range of less than 800 nm were interspersed among microfibers, which demonstrated the laminated structure in thickness direction and quasi-continuous branch structure in horizontal direction. Furthermore, as the PEG ratio increasing from 0% to 15%, the ratio of fibers with diameter of <800 nm and the fibers with diameter of >1500 nm increased from 37.50% to 231.82%. The filtration efficiency of the nonwovens followed typical behavior for the particles of 0.26 μm at air velocities of 0.05–0.142 m/s. The quality factor displayed an escalating trend with the increase of PEG ratio from 0% to 12% and achieved a maximum value of 0.02614 Pa−1 at the airflow rate of 0.053 m/s. Furthermore, the mechanism of formation of branch networks in nonwovens and its filter efficiency were discussed in detail. This work provides the feasibility of fast preparation of micro-nanofiber nonwovens with branch networks under high effective air filtration. Keywords: Nonwoven, Porous materials, Embedded, Air filtration, Micro-nanofiber |
url |
http://www.sciencedirect.com/science/article/pii/S2211379718330857 |
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