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  • Selected procedures permitting to prepare homogeneous nanofibre structures of the desired morphology by employing a suitable combination of variables during the electrospinning process are presented. A comparison (at the same pressure drop) was made of filtration capabilities of planar polyurethane nanostructures formed exclusively by nanofibres and space nanostructures having bead spacers or structures formed by a combination of micro-and nanofibres, through which ultrafine particles of ammonium sulphate 20 - 400 nm in size were filtered. The structures studied were described using a new digital image analysis technique based on black and white images obtained by scanning electron microscopy.
  • Selected procedures permitting to prepare homogeneous nanofibre structures of the desired morphology by employing a suitable combination of variables during the electrospinning process are presented. A comparison (at the same pressure drop) was made of filtration capabilities of planar polyurethane nanostructures formed exclusively by nanofibres and space nanostructures having bead spacers or structures formed by a combination of micro-and nanofibres, through which ultrafine particles of ammonium sulphate 20 - 400 nm in size were filtered. The structures studied were described using a new digital image analysis technique based on black and white images obtained by scanning electron microscopy. (en)
Title
  • Effect of Morphology of Nanostructures to Filter Ultrafine Particles
  • Effect of Morphology of Nanostructures to Filter Ultrafine Particles (en)
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  • Effect of Morphology of Nanostructures to Filter Ultrafine Particles
  • Effect of Morphology of Nanostructures to Filter Ultrafine Particles (en)
skos:notation
  • RIV/46900098:_____/11:#0000041!RIV14-MPO-46900098
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  • P(FR-TI1/053), V
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  • 196366
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  • RIV/46900098:_____/11:#0000041
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  • Morphology optimization; Nanofibers; Electrospinning; Nnofibers homogenity; Morphology optimization; Microfibers; Filtration; Filtration efficiency; Beaded nanofibers; Bead spacers; Bead formation; Bead defects; 3D nanostructure characterisation (en)
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  • [51AD37D51C31]
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  • Brno, Česká republika
http://linked.open...i/riv/mistoVydani
  • Ostrava, Česká republika
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  • Nanocon 2011 - sborník příspěvků
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  • Kimmer, Dušan
  • Ždímal, Vladimír
  • Fenyk, Jan
  • Petráš, David
  • Sambaer, Wannes
  • Vincent, Ivo
  • Zatloukal, Martin
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number of pages
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  • Tanger spol. s r. o.
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  • 978-80-87294-23-9
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