Запис Детальніше

Modification of polypropylene melt-blown fibers by photopolimeryzation of acrylic acid

Електронний науковий архів Науково-технічної бібліотеки Національного університету "Львівська політехніка"

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Поле Співвідношення
 
Title Modification of polypropylene melt-blown fibers by photopolimeryzation of acrylic acid
 
Creator Werner, Łukasz
Jackiewicz-Zagórska, Anna
 
Contributor Warsaw University of Technology
 
Subject acrylic acid
fibrous filters
filtration
grafting
melt-blown
modification
non-woven
photopolymerization
 
Description The main objective of this study was to find the method of polymer fibrous filter modification which cause the increase in the oil droplets filtration efficiency. An attempt was made to affect on the fibers wettability, by changing among others the surface roughness. The tested filters were made of polypropylene using the melt-blown technique. They were modified via photopolymerization - UV irradiation, together with the monomers Acrylic acid (AA). Modified materials were tested by high quality test bench for measuring filtration efficiency of nanodroplets.
 
Date 2018-05-04T08:17:43Z
2018-05-04T08:17:43Z
2016
 
Type Conference Abstract
 
Identifier Werner Ł. Modification of polypropylene melt-blown fibers by photopolimeryzation of acrylic acid / Łukasz Werner, Anna Jackiewicz-Zagórska // Litteris et Artibus : proceedings of the 6th International youth science forum, November 24–26, 2016, Lviv, Ukraine / Lviv Polytechnic National University. – Lviv : Lviv Polytechnic Publishing House, 2016. – P. 412–413. – Bibliography: 4 titles.
http://ena.lp.edu.ua:8080/handle/ntb/40990
 
Language en
 
Relation [1] A. Jackiewicz, A. Podgórski, L. Gradon, and J. Michalski, “Nanostructured Media to Improve the Performance of Fibrous Filters” KONA Powder and Particle Journal 30(30): 244–55, 2013. [2] I. Luzinov, P. Brown, G. Chumanov. “Ultrahydro-phobic Fibers: Lotus Approach”, Colloid and Polymer Science, (June): 4–6. 2007. [3] T. Bahners, T. Textor, K. Opwis, E. Schollmeyer, “Recent Approaches to Highly Hydrophobic Textile Surfaces.” Journal of Adhesion Science and Technology 22(3-4): 285–309. 2008. [4] J. Balart, V. Fombuena, R. Balart, J. M. España,R. Navarro, O. Fenollar, “Optimization of Adhesion Properties of Polypropylene by Surface Modification Using Acrylic Acid Photografting”, Vol. 116 (6),pp. 3256–3264 , 2010.
 
Format 412-413
application/pdf
 
Coverage UA
Lviv
 
Publisher Lviv Polytechnic Publishing House