Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand
Through this study, we established equations for estimating the standing tree carbon stock based on 24 tree species in multiple size classes in a case study at the Ngao Demonstration Forest (NDF) in northern Thailand. Four hundred thirty-nine wood samples from trees in mixed deciduous forest (MDF),...
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MDPI AG
2023-08-01
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author | Khwanchai Duangsathaporn Narapong Sangram Yenemurwon Omule Patsi Prasomsin Kritsadapan Palakit Pichit Lumyai |
author_facet | Khwanchai Duangsathaporn Narapong Sangram Yenemurwon Omule Patsi Prasomsin Kritsadapan Palakit Pichit Lumyai |
author_sort | Khwanchai Duangsathaporn |
collection | DOAJ |
description | Through this study, we established equations for estimating the standing tree carbon stock based on 24 tree species in multiple size classes in a case study at the Ngao Demonstration Forest (NDF) in northern Thailand. Four hundred thirty-nine wood samples from trees in mixed deciduous forest (MDF), dry dipterocarp forest (DDF), and dry evergreen forest (DEF) were collected using non-destructive methods to estimate aboveground carbon equations through statistical regression. The equations were established based on four criteria: (1) the coefficient of determination (R<sup>2</sup>), (2) standard error of estimate (SE), (3) F-value, and (4) significant value (<i>p</i>-value, α ≤ 0.05). The aboveground carbon stock (C) equations for standing trees in the MDF was C = 0.0199DBH<sup>2.1887</sup>H<sup>0.5825</sup>, for DDF was C = 0.0145DBH<sup>2.1435</sup>H<sup>0.748</sup>, for DEF was C = 0.0167DBH<sup>2.1423</sup>H<sup>0.7070</sup>, and the general equation for all species/wood density groups was C = 0.017543DBH<sup>2.1625</sup>H<sup>0.6614</sup>, where DBH is tree diameter at breast height, and H is tree total height. The aboveground carbon stock in the DDF, MDF, and DEF was 142, 53.02, and 12 tons/ha, respectively, and the estimated aboveground carbon stock in the Mae Huad sector at the NDF was 61 tons/ha. |
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spelling | doaj.art-e8763b83deb94760874cacc63a15bb702023-11-19T01:08:52ZengMDPI AGForests1999-49072023-08-01148158410.3390/f14081584Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern ThailandKhwanchai Duangsathaporn0Narapong Sangram1Yenemurwon Omule2Patsi Prasomsin3Kritsadapan Palakit4Pichit Lumyai5Department of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandDepartment of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandDepartment of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandDepartment of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandDepartment of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandDepartment of Forest Management, Faculty of Forestry, Kasetsart University, Bangkok 10900, ThailandThrough this study, we established equations for estimating the standing tree carbon stock based on 24 tree species in multiple size classes in a case study at the Ngao Demonstration Forest (NDF) in northern Thailand. Four hundred thirty-nine wood samples from trees in mixed deciduous forest (MDF), dry dipterocarp forest (DDF), and dry evergreen forest (DEF) were collected using non-destructive methods to estimate aboveground carbon equations through statistical regression. The equations were established based on four criteria: (1) the coefficient of determination (R<sup>2</sup>), (2) standard error of estimate (SE), (3) F-value, and (4) significant value (<i>p</i>-value, α ≤ 0.05). The aboveground carbon stock (C) equations for standing trees in the MDF was C = 0.0199DBH<sup>2.1887</sup>H<sup>0.5825</sup>, for DDF was C = 0.0145DBH<sup>2.1435</sup>H<sup>0.748</sup>, for DEF was C = 0.0167DBH<sup>2.1423</sup>H<sup>0.7070</sup>, and the general equation for all species/wood density groups was C = 0.017543DBH<sup>2.1625</sup>H<sup>0.6614</sup>, where DBH is tree diameter at breast height, and H is tree total height. The aboveground carbon stock in the DDF, MDF, and DEF was 142, 53.02, and 12 tons/ha, respectively, and the estimated aboveground carbon stock in the Mae Huad sector at the NDF was 61 tons/ha.https://www.mdpi.com/1999-4907/14/8/1584carbon stockstanding-tree carbon equationNgao Demonstration Forest |
spellingShingle | Khwanchai Duangsathaporn Narapong Sangram Yenemurwon Omule Patsi Prasomsin Kritsadapan Palakit Pichit Lumyai Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand Forests carbon stock standing-tree carbon equation Ngao Demonstration Forest |
title | Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand |
title_full | Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand |
title_fullStr | Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand |
title_full_unstemmed | Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand |
title_short | Formulating Equations for Estimating Forest Stand Carbon Stock for Various Tree Species Groups in Northern Thailand |
title_sort | formulating equations for estimating forest stand carbon stock for various tree species groups in northern thailand |
topic | carbon stock standing-tree carbon equation Ngao Demonstration Forest |
url | https://www.mdpi.com/1999-4907/14/8/1584 |
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