Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite

The current research work was planned to investigate the possibility of zinc oxide nanoparticles synthesis using hydrothermal method in wood structure and its effect on mechanical and biological properties of wood-polymer composite. Test samples were divided to control and treated with styrene, zinc...

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Main Authors: Elham Hatamzadeh Arabi, Maryam Ghorbani, Prya Biparva
Format: Article
Language:fas
Published: Regional Information Center for Science and Technology (RICeST) 2016-12-01
Series:تحقیقات علوم چوب و کاغذ ایران
Subjects:
Online Access:http://ijwpr.areeo.ac.ir/article_106761_e08bd648d87da2c9cd4dca27f62237b2.pdf
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spelling doaj-ea618e80956542a6a13846e95fc25ead2020-11-24T22:01:15ZfasRegional Information Center for Science and Technology (RICeST) تحقیقات علوم چوب و کاغذ ایران1735-09132383-112X2016-12-0131456657610.22092/ijwpr.2016.106761106761Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer compositeElham Hatamzadeh Arabi0Maryam Ghorbani1Prya Biparva2M.Sc., Student, Department of Wood and Paper, Natural Resources Faculty, Sari Agricultural Sciences and Natural Resources University, Sari, IranAssociate Professor of Natural Resources Faculty, Sari Agricultural Sciences and Natural Resources University, Sari, IranAssistance Professor, Department of sciences, Sari Agricultural Sciences and Natural Resources University, Sari, IranThe current research work was planned to investigate the possibility of zinc oxide nanoparticles synthesis using hydrothermal method in wood structure and its effect on mechanical and biological properties of wood-polymer composite. Test samples were divided to control and treated with styrene, zinc oxide nanoparticles, nanocomposite and nano/Styrene. Mechanical and biological tests samples according toASTM-D143 and EN113 respectively were treated by vacuum- pressure method using cylinder experimental. The mechanical tests were considered for each level 5 repeat and for biological test for each level 10 repeat. The presence of zinc oxide nanoparticles on cell wall and styrene in the cell cavities were confirmed by Scanning electron microscopy. According to the results, bending strength, bending modulus, hardness and pressure parallel to grain for nano/styrene samples with highest improvement were increased 36.74, 40.23, 60.58 and 25.07 in comparison with control respectively. Also, decay resistance of treated samples increased, so that maximum and least weight loss were recorded for control and nano/styrene samples with 25.81 and 3.37% weight loss.http://ijwpr.areeo.ac.ir/article_106761_e08bd648d87da2c9cd4dca27f62237b2.pdfZinc oxide nanoparticleshydrothermal methodwood-polymerMECHANICAL PROPERTIESdecay resistance
collection DOAJ
language fas
format Article
sources DOAJ
author Elham Hatamzadeh Arabi
Maryam Ghorbani
Prya Biparva
spellingShingle Elham Hatamzadeh Arabi
Maryam Ghorbani
Prya Biparva
Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
تحقیقات علوم چوب و کاغذ ایران
Zinc oxide nanoparticles
hydrothermal method
wood-polymer
MECHANICAL PROPERTIES
decay resistance
author_facet Elham Hatamzadeh Arabi
Maryam Ghorbani
Prya Biparva
author_sort Elham Hatamzadeh Arabi
title Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
title_short Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
title_full Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
title_fullStr Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
title_full_unstemmed Effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
title_sort effect of insitu synthesis of zinc oxide nanoparticles on the mechanical and biological properties of a wood-polymer composite
publisher Regional Information Center for Science and Technology (RICeST)
series تحقیقات علوم چوب و کاغذ ایران
issn 1735-0913
2383-112X
publishDate 2016-12-01
description The current research work was planned to investigate the possibility of zinc oxide nanoparticles synthesis using hydrothermal method in wood structure and its effect on mechanical and biological properties of wood-polymer composite. Test samples were divided to control and treated with styrene, zinc oxide nanoparticles, nanocomposite and nano/Styrene. Mechanical and biological tests samples according toASTM-D143 and EN113 respectively were treated by vacuum- pressure method using cylinder experimental. The mechanical tests were considered for each level 5 repeat and for biological test for each level 10 repeat. The presence of zinc oxide nanoparticles on cell wall and styrene in the cell cavities were confirmed by Scanning electron microscopy. According to the results, bending strength, bending modulus, hardness and pressure parallel to grain for nano/styrene samples with highest improvement were increased 36.74, 40.23, 60.58 and 25.07 in comparison with control respectively. Also, decay resistance of treated samples increased, so that maximum and least weight loss were recorded for control and nano/styrene samples with 25.81 and 3.37% weight loss.
topic Zinc oxide nanoparticles
hydrothermal method
wood-polymer
MECHANICAL PROPERTIES
decay resistance
url http://ijwpr.areeo.ac.ir/article_106761_e08bd648d87da2c9cd4dca27f62237b2.pdf
work_keys_str_mv AT elhamhatamzadeharabi effectofinsitusynthesisofzincoxidenanoparticlesonthemechanicalandbiologicalpropertiesofawoodpolymercomposite
AT maryamghorbani effectofinsitusynthesisofzincoxidenanoparticlesonthemechanicalandbiologicalpropertiesofawoodpolymercomposite
AT pryabiparva effectofinsitusynthesisofzincoxidenanoparticlesonthemechanicalandbiologicalpropertiesofawoodpolymercomposite
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