Study of particleboard manufacture by nonconventional bonding

This research was conducted to investigate the posibility of producing particleboards using surface activation method of  P. deltoides particles and then using  cross-linking agents to bond wood particles. At  first, nitric acid as an oxidative agent at different proportion including 0, 3, 4.5 &...

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Autor principal: Noraldin Nazarnezhad
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Lenguaje:FA
Publicado: Regional Information Center for Science and Technology (RICeST) 2010
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Acceso en línea:https://doaj.org/article/45b56578821d499b8dbbefbbb16239c6
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spelling oai:doaj.org-article:45b56578821d499b8dbbefbbb16239c62021-12-02T07:43:05ZStudy of particleboard manufacture by nonconventional bonding1735-09132383-112X10.22092/ijwpr.2011.117259https://doaj.org/article/45b56578821d499b8dbbefbbb16239c62010-03-01T00:00:00Zhttp://ijwpr.areeo.ac.ir/article_117259_d6152640fbf3401af4ffdbc93d1b52ae.pdfhttps://doaj.org/toc/1735-0913https://doaj.org/toc/2383-112XThis research was conducted to investigate the posibility of producing particleboards using surface activation method of  P. deltoides particles and then using  cross-linking agents to bond wood particles. At  first, nitric acid as an oxidative agent at different proportion including 0, 3, 4.5 & 6 percent (based on OD weight of wood) and two assembly times of 0 and 1 hour was used. Black liquor at two amounts of 5 and 7 percent was used as cross-linking agent. The results indicates that using 6% nitric acid and 7% liquor had the best performance and that, the assembly time of 1 hour had negative effect on all properties. The ATR spectrum of treated samples showed the increase in the absorbtion rate at 1740 cm-1  related to COOH group as compared with control samples.  In addition, the spectrum indicated that increasing oxidation increase absorbtion rate of COOH group.Noraldin NazarnezhadRegional Information Center for Science and Technology (RICeST)articlesynthetic adhesiveactivationPARTICLEBOARDenvironmentalcross linking agentoxidationForestrySD1-669.5FAتحقیقات علوم چوب و کاغذ ایران, Vol 26, Iss 1, Pp 1-9 (2010)
institution DOAJ
collection DOAJ
language FA
topic synthetic adhesive
activation
PARTICLEBOARD
environmental
cross linking agent
oxidation
Forestry
SD1-669.5
spellingShingle synthetic adhesive
activation
PARTICLEBOARD
environmental
cross linking agent
oxidation
Forestry
SD1-669.5
Noraldin Nazarnezhad
Study of particleboard manufacture by nonconventional bonding
description This research was conducted to investigate the posibility of producing particleboards using surface activation method of  P. deltoides particles and then using  cross-linking agents to bond wood particles. At  first, nitric acid as an oxidative agent at different proportion including 0, 3, 4.5 & 6 percent (based on OD weight of wood) and two assembly times of 0 and 1 hour was used. Black liquor at two amounts of 5 and 7 percent was used as cross-linking agent. The results indicates that using 6% nitric acid and 7% liquor had the best performance and that, the assembly time of 1 hour had negative effect on all properties. The ATR spectrum of treated samples showed the increase in the absorbtion rate at 1740 cm-1  related to COOH group as compared with control samples.  In addition, the spectrum indicated that increasing oxidation increase absorbtion rate of COOH group.
format article
author Noraldin Nazarnezhad
author_facet Noraldin Nazarnezhad
author_sort Noraldin Nazarnezhad
title Study of particleboard manufacture by nonconventional bonding
title_short Study of particleboard manufacture by nonconventional bonding
title_full Study of particleboard manufacture by nonconventional bonding
title_fullStr Study of particleboard manufacture by nonconventional bonding
title_full_unstemmed Study of particleboard manufacture by nonconventional bonding
title_sort study of particleboard manufacture by nonconventional bonding
publisher Regional Information Center for Science and Technology (RICeST)
publishDate 2010
url https://doaj.org/article/45b56578821d499b8dbbefbbb16239c6
work_keys_str_mv AT noraldinnazarnezhad studyofparticleboardmanufacturebynonconventionalbonding
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