Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment

Practicability of modern high thermal resistant polyoxadiazole fibers in the production of filtration textile materials for gas treatment stations is shown. Thermogravimetric researches proved high thermal resistance (up to 400℃) of filtration materials based on arselone fiber in thermal-oxidative a...

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Main Authors: Lesya V Pelyk, Volodymyr O Vasylechko, Petro O Kutsyk, Yuliya A Peleh
Format: Article
Language:English
Published: SAGE Publishing 2017-12-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1177/0263617417709117
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author Lesya V Pelyk
Volodymyr O Vasylechko
Petro O Kutsyk
Yuliya A Peleh
author_facet Lesya V Pelyk
Volodymyr O Vasylechko
Petro O Kutsyk
Yuliya A Peleh
author_sort Lesya V Pelyk
collection DOAJ
description Practicability of modern high thermal resistant polyoxadiazole fibers in the production of filtration textile materials for gas treatment stations is shown. Thermogravimetric researches proved high thermal resistance (up to 400℃) of filtration materials based on arselone fiber in thermal-oxidative atmosphere. Chemical composition of gas–dust, detained by textile bag filters on gas treatment stations of ferro-alloy plants, is examined. Efficiency of arselone textile material is analyzed in order to extract compounds of Cd, Pb, Mn, Zn, Cu, Cr, Al, Fe, Ca, and Mg from gas–dust.
format Article
id doaj-art-aca99599c8fc444ca3de7f86e788f7e9
institution Kabale University
issn 0263-6174
2048-4038
language English
publishDate 2017-12-01
publisher SAGE Publishing
record_format Article
series Adsorption Science & Technology
spelling doaj-art-aca99599c8fc444ca3de7f86e788f7e92025-01-03T00:11:34ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382017-12-013510.1177/0263617417709117Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatmentLesya V PelykVolodymyr O VasylechkoPetro O KutsykYuliya A PelehPracticability of modern high thermal resistant polyoxadiazole fibers in the production of filtration textile materials for gas treatment stations is shown. Thermogravimetric researches proved high thermal resistance (up to 400℃) of filtration materials based on arselone fiber in thermal-oxidative atmosphere. Chemical composition of gas–dust, detained by textile bag filters on gas treatment stations of ferro-alloy plants, is examined. Efficiency of arselone textile material is analyzed in order to extract compounds of Cd, Pb, Mn, Zn, Cu, Cr, Al, Fe, Ca, and Mg from gas–dust.https://doi.org/10.1177/0263617417709117
spellingShingle Lesya V Pelyk
Volodymyr O Vasylechko
Petro O Kutsyk
Yuliya A Peleh
Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
Adsorption Science & Technology
title Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
title_full Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
title_fullStr Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
title_full_unstemmed Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
title_short Innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
title_sort innovative filters made of polyoxadiazole fibers for industrial gas and dust emissions treatment
url https://doi.org/10.1177/0263617417709117
work_keys_str_mv AT lesyavpelyk innovativefiltersmadeofpolyoxadiazolefibersforindustrialgasanddustemissionstreatment
AT volodymyrovasylechko innovativefiltersmadeofpolyoxadiazolefibersforindustrialgasanddustemissionstreatment
AT petrookutsyk innovativefiltersmadeofpolyoxadiazolefibersforindustrialgasanddustemissionstreatment
AT yuliyaapeleh innovativefiltersmadeofpolyoxadiazolefibersforindustrialgasanddustemissionstreatment