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Design of ultra-fine nonwovens via electrospinning of Nylon 6: Spinning parameters and filtration efficiency

✍ Scribed by Shu Zhang; Woo Sub Shim; Jooyoun Kim


Book ID
104044085
Publisher
Elsevier Science
Year
2009
Weight
909 KB
Volume
30
Category
Article
ISSN
0261-3069

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✦ Synopsis


Electrospinning and its application in filtration area are worthwhile to look into as the large surface-tovolume ratio of nanoweb may affect the filtration efficiency by possibly giving more particle-capture sites. In this study, Nylon 6 is electrospun to produce ultra-fine nonwovens, and its characteristics as filter media are investigated. Electrospinning parameters including solution concentration, tip-to-collector distance, and the feed rate are changed in producing nonwovens in different fibre size distribution ranging from 50 to 150 nm in diameters. The solution concentration of 10 and 12 wt% produced the fibres with the average diameter of around 85 nm, where 15 wt% solution produced larger fibres with the average diameter of 121 nm. Finer fibres were able to process at longer tip-to-collector distance and at slower feed rate. The electrospun media that are processed at different spinning conditions are evaluated for its filtration efficiency and pressure drop. The electrospun nanofibre media shows the potential in application as HEPA and ULPA grade filter media, by comparing the filtering performance of nanoweb with the conventional melt-blown nonwoven media.