Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez

Biomass and carbon sequestration potential is one of the most important benefits of trees in forest ecosystems. This research was done to estimate the amount of biomass in individuals and coppice forms of Quercus brantii Lindl. in Balootboland forests near the Dehdez, Khozestan province. Grid dimens...

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Main Authors: Sadegh Alinejadi, Reza Basiri, Pejman Tahmasebi kohyani, Yousef Askari, Mostafa Moradi
Format: Article
Language:fas
Published: Iranian Society of Forestry 2016-09-01
Series:مجله جنگل ایران
Subjects:
Online Access:http://www.ijf-isaforestry.ir/article_38823_6cb408863eb6ca20f01614f6e17d70e0.pdf
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spelling doaj-f58d63d7bf8c42128ec19e820636008b2021-06-26T07:04:10ZfasIranian Society of Forestryمجله جنگل ایران2008-61132423-44352016-09-018212913938823Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, DehdezSadegh Alinejadi0Reza Basiri1Pejman Tahmasebi kohyani2Yousef Askari3Mostafa Moradi4MSc. Student of forest ecology and silviculture, Behbahan Khatam Alanbia University of technology, I.R. Iran.Associate professor of forestry, Behbahan Khatam Alanbia University of technology, I.R. Iran.Associate professor of rangeland management, Faculty of Natural Resources and earth Science, University of Shahrekord, I.R. Iran.Ph.D. Student of Forestry, Faculty of Natural Resources and earth Science, University of Shahrekord, I.R. Iran.Assistance professor of forestry, Behbahan Khatam Alanbia University of technology, I.R. Iran.Biomass and carbon sequestration potential is one of the most important benefits of trees in forest ecosystems. This research was done to estimate the amount of biomass in individuals and coppice forms of Quercus brantii Lindl. in Balootboland forests near the Dehdez, Khozestan province. Grid dimensions were selected 100 × 100 m and the nearest tree to a sampling point was chosen. Selected trees should include all diameter classes of high forest or individual trees and all crown diameter classes of coppice if possible. Totally 18 individuals were selected and their quantitative parameters were recorded. Cutting and separating operations were then performed. Different parts of trees were immediately weighted after cutting in the field and sampling was performed to measure the dry weight and the amount of carbon sequestration. According to the results, there was no statistically significant difference between the biomass in two forms of growths. The average biomass of above ground for each tree was approximately determined 277kg and 230kg in form of individual tree and coppice, respectively. These amounts in the stands for individual and coppice forms were estimated 18.2 and 9.3 tons per hectare, respectively. According to the results, large organs (trunk and branches) and small parts (twigs and stump) have more carbon sequestration potential in individual and coppice forms, respectively. The highest and lowest amount of carbon was stored in branches and leaves, respectively.http://www.ijf-isaforestry.ir/article_38823_6cb408863eb6ca20f01614f6e17d70e0.pdfbiomasscarbon sequestrationcoppiceindividual treequercus brantii lindl
collection DOAJ
language fas
format Article
sources DOAJ
author Sadegh Alinejadi
Reza Basiri
Pejman Tahmasebi kohyani
Yousef Askari
Mostafa Moradi
spellingShingle Sadegh Alinejadi
Reza Basiri
Pejman Tahmasebi kohyani
Yousef Askari
Mostafa Moradi
Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
مجله جنگل ایران
biomass
carbon sequestration
coppice
individual tree
quercus brantii lindl
author_facet Sadegh Alinejadi
Reza Basiri
Pejman Tahmasebi kohyani
Yousef Askari
Mostafa Moradi
author_sort Sadegh Alinejadi
title Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
title_short Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
title_full Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
title_fullStr Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
title_full_unstemmed Estimation of biomass and carbon sequestration in various forms of Quercus brantii Lindl. stands in Balout Boland, Dehdez
title_sort estimation of biomass and carbon sequestration in various forms of quercus brantii lindl. stands in balout boland, dehdez
publisher Iranian Society of Forestry
series مجله جنگل ایران
issn 2008-6113
2423-4435
publishDate 2016-09-01
description Biomass and carbon sequestration potential is one of the most important benefits of trees in forest ecosystems. This research was done to estimate the amount of biomass in individuals and coppice forms of Quercus brantii Lindl. in Balootboland forests near the Dehdez, Khozestan province. Grid dimensions were selected 100 × 100 m and the nearest tree to a sampling point was chosen. Selected trees should include all diameter classes of high forest or individual trees and all crown diameter classes of coppice if possible. Totally 18 individuals were selected and their quantitative parameters were recorded. Cutting and separating operations were then performed. Different parts of trees were immediately weighted after cutting in the field and sampling was performed to measure the dry weight and the amount of carbon sequestration. According to the results, there was no statistically significant difference between the biomass in two forms of growths. The average biomass of above ground for each tree was approximately determined 277kg and 230kg in form of individual tree and coppice, respectively. These amounts in the stands for individual and coppice forms were estimated 18.2 and 9.3 tons per hectare, respectively. According to the results, large organs (trunk and branches) and small parts (twigs and stump) have more carbon sequestration potential in individual and coppice forms, respectively. The highest and lowest amount of carbon was stored in branches and leaves, respectively.
topic biomass
carbon sequestration
coppice
individual tree
quercus brantii lindl
url http://www.ijf-isaforestry.ir/article_38823_6cb408863eb6ca20f01614f6e17d70e0.pdf
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