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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Heikkilä, Pirjo
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Topics
Publications (29/29 displayed)
- 2023Nano-scale nonwoven fabrics by electrospinning of polylactic acid
- 2022Comparison of the Growth and Thermal Properties of Nonwoven Polymers after Atomic Layer Deposition and Vapor Phase Infiltration
- 2021Comparison of the growth and thermal properties of nonwoven polymers after atomic layer deposition and vapor phase infiltrationcitations
- 2018Airborne Dust from Mechanically Recycled Cotton during Ring Spinning
- 2018Atomic layer deposition of Ti-Nb-O thin films onto electrospun fibers for fibrous and tubular catalyst support structurescitations
- 2017Electrospun sheet materials from CA, PES and PLLA as supports for ALD coating
- 2016Fibrous and tubular support materials by electrospinning and atomic layer deposition (ALD) for PEM fuel cells for automotive MEAs
- 2015ALD deposition of core-shell structures onto electrospun carbon webs for PEM fuel cell MEAs
- 2015Fibrous and tubular support materials using in catalyst support materials for low-Pt PEM fuel cells for automotive MEAs
- 2015The effect of physical adhesion promotion treatments on interfacial adhesion in cellulose-epoxy
- 2015Fibrous and tubular structures for PEMFC catalyst supports combining electrospinning, heat treatments and atomic layer deposition (ALD)
- 2014Core-shell carbon-ceramic fibres by electrospinning and atomic layer deposition (ALD)
- 2014Functional nonwovens for medical applications
- 2014Functional nonwovens for medical applications
- 2014ALD thin films for PEM fuel cells for automotive MEAs
- 2014ALD materials in catalyst support materials on PEM fuel cells for automotive MEAs
- 2014Atomic and molecular layer deposition for surface modificationcitations
- 2013Sustainable Nonwoven Materials by Foam Forming Using Cellulosic Fibres and Recycled Materials
- 2013Atomic and molecular layer deposition for surface modification
- 2013Foam formed nonwoven materials and functionalizations of nonwovens within neoweb project
- 2013Core-shell carbon-ceramic fibres by electrospinning and atomic layer deposition (ALD) for fuel cell catalyst supports
- 2012Preparation of carbon nanotube embedded in polyacrylonitrile (PAN) nanofibre composites by electrospinning processcitations
- 2012Sub-micron and nanosized specialty fibres by electrospinning
- 2012High surface area nanostructured tubes prepared by dissolution of ALD-coated electrospun fiberscitations
- 2011Press felts coated with electrospun nanofibres
- 2011Tubes by fibre templates with two nanofabrication processes electrospinning and atomic layer deposition
- 2011Atomic layer deposition in food packaging and barrier coatings
- 2009Nanofibre filters in aerosol filtration
- 2006Poly(vinyl alcohol) and polyamide-66 nanocomposites prepared by electrospinningcitations
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document
Nano-scale nonwoven fabrics by electrospinning of polylactic acid
Abstract
Introduction <br/><br/>Due to increasing need for sustainable products, several bio-based and biodegradable materials have been studied for replacement of fossil-based materials to reduce accumulation of waste into environment, and carbon dioxide emissions during life cycles of individual products. <br/><br/>During recent COVID-19 pandemic, high demand for personal face masks emerged. By using disposable face masks, the spread of infectious respiratory diseases can be effectively halted. With this approach though, there has been a huge problem with waste accumulation due to face masks being disposed into environment after use.<br/><br/>Several candidates for bio-based and biodegradable materials for disposable products have been studied, including polylactic acid (PLA), polybutylene succinate (PBS), PBAT (polybutylene adipate terephthalate) and cellulose acetate (CA). From these materials, polylactic acid was chosen as potential candidate for electrospinning trials. <br/><br/>Electrospinning can be used for production of nano-scale fibres, in production of nonwoven webs. Small diameter of fibres is essential for filtration applications, especially with pathogens in nanoscale.<br/><br/>Goals <br/><br/>The main goal of these trials was to study solubility and suitability of different bio-based polymers for electrospinning, effects of different processing variables, and properties of produced nonwoven webs. Furthermore, produced webs will be further studied for suitability in filtration applications. <br/><br/>Methods <br/><br/>PLA was dissolved into a binary-solvent mixture of chloroform (CF) and dimethylformamide (DMF) in mass ratio of 90/10 in concentrations of 9,70 % and 10,50 % by using heating plate equipped with magnetic stirrer. Input flow by gravitation was used during spinning. The effects of tip to collector <br/>distance, voltage, concentration of solution, and needle size were studied to find processing parameters for good formation of web, minimal defects in fibres, and smallest possible fibre diameter. After spinning, the electrospun samples were analyzed by scanning electron microscope (SEM) imaging. The results were further utilized for production of stand-alone web with sufficiently <br/>low fibre diameter, good fibre density, and sufficient strength for handling.<br/><br/>Results <br/><br/>It was found possible to produce filtration layer with good physical properties, by using bio-based and biodegradable PLA. Further studies for chargeability are required to determine whether produced webs are suitable for filtration applications. <br/>