Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite
The research aims in reinforcing viscose fabric with extracted cellulose from the palm, which has been doped with carbon mesoporous nanoparticles (CMNs), and electrospinning on the surface of viscose fabric. Hence, the palm cellulose was extracted by a chemical process in different alkaline periods...
Main Authors: | , , , , , |
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2022-10-01
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Series: | Journal of Natural Fibers |
Subjects: | |
Online Access: | http://dx.doi.org/10.1080/15440478.2021.1975600 |
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author | Salar Zohoori Sara Shahsavari Mahboobeh Sabzali Seyedeh Arezoo Hosseini Reyhaneh Talebikatieklahijany Zahra Morshedzadeh |
author_facet | Salar Zohoori Sara Shahsavari Mahboobeh Sabzali Seyedeh Arezoo Hosseini Reyhaneh Talebikatieklahijany Zahra Morshedzadeh |
author_sort | Salar Zohoori |
collection | DOAJ |
description | The research aims in reinforcing viscose fabric with extracted cellulose from the palm, which has been doped with carbon mesoporous nanoparticles (CMNs), and electrospinning on the surface of viscose fabric. Hence, the palm cellulose was extracted by a chemical process in different alkaline periods and doped with various concentrations of CMNs, and the solution was electro-spun on the aluminum surface. The morphology, tensile strength, and abrasion resistance of the produced nano web was investigated, and the best condition for preparing nano web was achieved. In the next step, the best condition was the electrospinning on the surface of viscose fabric as reinforcing the viscose, and the morphology (by FESEM), tensile force, abrasion resistance, thermal analysis (DTG, TGA, and thermal conductivity), air permeability, and moisture content of the composite was investigated. The results of this study show that reinforcing viscose fabric with nano web of palm-cellulose doped with CMN have a significant influence on enhancing the properties of viscose fabric. |
first_indexed | 2024-03-11T23:23:36Z |
format | Article |
id | doaj.art-1d64907bb0a14df3b3146b8d03142b20 |
institution | Directory Open Access Journal |
issn | 1544-0478 1544-046X |
language | English |
last_indexed | 2024-03-11T23:23:36Z |
publishDate | 2022-10-01 |
publisher | Taylor & Francis Group |
record_format | Article |
series | Journal of Natural Fibers |
spelling | doaj.art-1d64907bb0a14df3b3146b8d03142b202023-09-20T13:25:56ZengTaylor & Francis GroupJournal of Natural Fibers1544-04781544-046X2022-10-0119148937894510.1080/15440478.2021.19756001975600Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle CompositeSalar Zohoori0Sara Shahsavari1Mahboobeh Sabzali2Seyedeh Arezoo Hosseini3Reyhaneh Talebikatieklahijany4Zahra Morshedzadeh5Yazd UniversityYazd UniversityTechnical and Vocational University (TVU)Yazd UniversityTechnical and Vocational University (TVU)Technical and Vocational University (TVU)The research aims in reinforcing viscose fabric with extracted cellulose from the palm, which has been doped with carbon mesoporous nanoparticles (CMNs), and electrospinning on the surface of viscose fabric. Hence, the palm cellulose was extracted by a chemical process in different alkaline periods and doped with various concentrations of CMNs, and the solution was electro-spun on the aluminum surface. The morphology, tensile strength, and abrasion resistance of the produced nano web was investigated, and the best condition for preparing nano web was achieved. In the next step, the best condition was the electrospinning on the surface of viscose fabric as reinforcing the viscose, and the morphology (by FESEM), tensile force, abrasion resistance, thermal analysis (DTG, TGA, and thermal conductivity), air permeability, and moisture content of the composite was investigated. The results of this study show that reinforcing viscose fabric with nano web of palm-cellulose doped with CMN have a significant influence on enhancing the properties of viscose fabric.http://dx.doi.org/10.1080/15440478.2021.1975600palm celluloseviscoseelectrospinningcarbon mesoporousnano web |
spellingShingle | Salar Zohoori Sara Shahsavari Mahboobeh Sabzali Seyedeh Arezoo Hosseini Reyhaneh Talebikatieklahijany Zahra Morshedzadeh Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite Journal of Natural Fibers palm cellulose viscose electrospinning carbon mesoporous nano web |
title | Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite |
title_full | Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite |
title_fullStr | Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite |
title_full_unstemmed | Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite |
title_short | Reinforcing of Viscose Fabric Using Nano Web of Palm-Cellulose Carbon Mesoporous Nanoparticle Composite |
title_sort | reinforcing of viscose fabric using nano web of palm cellulose carbon mesoporous nanoparticle composite |
topic | palm cellulose viscose electrospinning carbon mesoporous nano web |
url | http://dx.doi.org/10.1080/15440478.2021.1975600 |
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