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  • The gas and liquid filters containing nanofibres have been described in a number of patents and papers. Filtration efficiency is closely related to the fiber diameter. Electrospinning technology is able to produce fibers with diameter in submicron range and created materials can filter off dangerous bacterias and viruses but also the tobacco smoke. The technology of the industrial nanofiber manufacturing was developed at the Technical University of Liberec, Department of nonwovens. The nanofiber materials used for filtration are: polyvinylalcohole (PVAL) and polyamide (PA). The greatest advantage of nanofibers is the rapid increase of the filtration efficiency with less significant decrease of the filtration permeability or less significant pressure derived from the filtration permeability.
  • The gas and liquid filters containing nanofibres have been described in a number of patents and papers. Filtration efficiency is closely related to the fiber diameter. Electrospinning technology is able to produce fibers with diameter in submicron range and created materials can filter off dangerous bacterias and viruses but also the tobacco smoke. The technology of the industrial nanofiber manufacturing was developed at the Technical University of Liberec, Department of nonwovens. The nanofiber materials used for filtration are: polyvinylalcohole (PVAL) and polyamide (PA). The greatest advantage of nanofibers is the rapid increase of the filtration efficiency with less significant decrease of the filtration permeability or less significant pressure derived from the filtration permeability. (en)
Title
  • Testing of pores in nanofiber web
  • Testing of pores in nanofiber web (en)
skos:prefLabel
  • Testing of pores in nanofiber web
  • Testing of pores in nanofiber web (en)
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  • RIV/46747885:24220/07:#0002374!RIV13-MSM-24220___
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  • P(1M0554)
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  • 454830
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  • RIV/46747885:24220/07:#0002374
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  • nanofibers, pores (en)
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  • [F4D588852E8B]
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  • Liberec
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  • Liberec
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  • Hrůza, Jakub
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  • Neuveden
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  • 978-80-7372-207-4
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  • 24220
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