A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods

The aim of study was accomplished on identification and comparison of chemical compounds in wood and bark of oak. For this purpose, the samples were chosen randomly from oak in Nowshahr forest region. Then, flour and ash were provided from heart wood, sap wood and bark of oak by TAPPI standards. For...

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Autor principal: Ramin Vaysi
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Lenguaje:FA
Publicado: Regional Information Center for Science and Technology (RICeST) 2017
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OAK
Acceso en línea:https://doaj.org/article/510d88d4763946b38a9cd522131b4d1a
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spelling oai:doaj.org-article:510d88d4763946b38a9cd522131b4d1a2021-12-02T09:11:26ZA Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods1735-09132383-112X10.22092/ijwpr.2017.109582https://doaj.org/article/510d88d4763946b38a9cd522131b4d1a2017-07-01T00:00:00Zhttp://ijwpr.areeo.ac.ir/article_109582_c005cf41d00acb09e895e8e61799abd7.pdfhttps://doaj.org/toc/1735-0913https://doaj.org/toc/2383-112XThe aim of study was accomplished on identification and comparison of chemical compounds in wood and bark of oak. For this purpose, the samples were chosen randomly from oak in Nowshahr forest region. Then, flour and ash were provided from heart wood, sap wood and bark of oak by TAPPI standards. For measured metallic ions, first the mineral compound of ash dissolved by 65% nitric acid and for it's identified by atomic adsorption method. The results showed that Fe, Zn and Cu ions in wood of oak were more than its bark and its Mn ion was lower. Then extractives were separated from wood flour by acetone and extractives residue transferred to glassy vial and was added BSTFA reactor to it. After samples prepared, its were injected by GC/MS for analyze. Identification of compounds was done by retention time of each compound, calculation of quartz index and Adams table. The result of GC-MS showed that there are 10, 42 and10 compounds in heart wood, sap wood and bark of oak, respectively. Comparison of chromatograms showed that Decan, Dodecan, Tetradecane and Bis(2-ethylhexyl)phthalate were exists as 4 common components in bark, sap wood and heart wood of oak and Silicic acid and 1,2-Benzenedicarboxylic acid were exists as 2 common components in bark and sap wood of oak. These compounds can very important in durability and consumption its.Ramin VaysiRegional Information Center for Science and Technology (RICeST)articleOAKAtomic AdsorptionMetallic IonsMass spectrometryGas chromatographyOrganic compoundsForestrySD1-669.5FAتحقیقات علوم چوب و کاغذ ایران, Vol 32, Iss 2, Pp 275-286 (2017)
institution DOAJ
collection DOAJ
language FA
topic OAK
Atomic Adsorption
Metallic Ions
Mass spectrometry
Gas chromatography
Organic compounds
Forestry
SD1-669.5
spellingShingle OAK
Atomic Adsorption
Metallic Ions
Mass spectrometry
Gas chromatography
Organic compounds
Forestry
SD1-669.5
Ramin Vaysi
A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
description The aim of study was accomplished on identification and comparison of chemical compounds in wood and bark of oak. For this purpose, the samples were chosen randomly from oak in Nowshahr forest region. Then, flour and ash were provided from heart wood, sap wood and bark of oak by TAPPI standards. For measured metallic ions, first the mineral compound of ash dissolved by 65% nitric acid and for it's identified by atomic adsorption method. The results showed that Fe, Zn and Cu ions in wood of oak were more than its bark and its Mn ion was lower. Then extractives were separated from wood flour by acetone and extractives residue transferred to glassy vial and was added BSTFA reactor to it. After samples prepared, its were injected by GC/MS for analyze. Identification of compounds was done by retention time of each compound, calculation of quartz index and Adams table. The result of GC-MS showed that there are 10, 42 and10 compounds in heart wood, sap wood and bark of oak, respectively. Comparison of chromatograms showed that Decan, Dodecan, Tetradecane and Bis(2-ethylhexyl)phthalate were exists as 4 common components in bark, sap wood and heart wood of oak and Silicic acid and 1,2-Benzenedicarboxylic acid were exists as 2 common components in bark and sap wood of oak. These compounds can very important in durability and consumption its.
format article
author Ramin Vaysi
author_facet Ramin Vaysi
author_sort Ramin Vaysi
title A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
title_short A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
title_full A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
title_fullStr A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
title_full_unstemmed A Study on the Possibility of Identification and Comparison of Metallic Ions and Chemical Components in Wood and Bark of Oak by Atomic Adsorption and GC-MS Methods
title_sort study on the possibility of identification and comparison of metallic ions and chemical components in wood and bark of oak by atomic adsorption and gc-ms methods
publisher Regional Information Center for Science and Technology (RICeST)
publishDate 2017
url https://doaj.org/article/510d88d4763946b38a9cd522131b4d1a
work_keys_str_mv AT raminvaysi astudyonthepossibilityofidentificationandcomparisonofmetallicionsandchemicalcomponentsinwoodandbarkofoakbyatomicadsorptionandgcmsmethods
AT raminvaysi studyonthepossibilityofidentificationandcomparisonofmetallicionsandchemicalcomponentsinwoodandbarkofoakbyatomicadsorptionandgcmsmethods
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