Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia

Reliable data on CO2 quantification is increasingly important to quantify the climate benefits of forest landscape restoration and international commitments, such as the Warsaw REDD+ Framework and Nationally Determined Contributions under the Paris Agreement. Calophyllum inophyllum L. (nyamplung as...

Descripción completa

Detalles Bibliográficos
Autores principales: Basuki, T.M., Leksono, B., Baral, H., Andini, S., Wahyuni, N.S., Artati, Y., Choi, E., Shin, S., Kim, R., Yang, A.R., Samsudin, Y.B., Windyarini, E.
Formato: Journal Article
Lenguaje:Inglés
Publicado: MDPI 2022
Materias:
Acceso en línea:https://hdl.handle.net/10568/120407
_version_ 1855518473792258048
author Basuki, T.M.
Leksono, B.
Baral, H.
Andini, S.
Wahyuni, N.S.
Artati, Y.
Choi, E.
Shin, S.
Kim, R.
Yang, A.R.
Samsudin, Y.B.
Windyarini, E.
author_browse Andini, S.
Artati, Y.
Baral, H.
Basuki, T.M.
Choi, E.
Kim, R.
Leksono, B.
Samsudin, Y.B.
Shin, S.
Wahyuni, N.S.
Windyarini, E.
Yang, A.R.
author_facet Basuki, T.M.
Leksono, B.
Baral, H.
Andini, S.
Wahyuni, N.S.
Artati, Y.
Choi, E.
Shin, S.
Kim, R.
Yang, A.R.
Samsudin, Y.B.
Windyarini, E.
author_sort Basuki, T.M.
collection Repository of Agricultural Research Outputs (CGSpace)
description Reliable data on CO2 quantification is increasingly important to quantify the climate benefits of forest landscape restoration and international commitments, such as the Warsaw REDD+ Framework and Nationally Determined Contributions under the Paris Agreement. Calophyllum inophyllum L. (nyamplung as a local name or tamanu tree for the commercial name) is an increasingly popular tree species in forest landscape restoration and bioenergy production for a variety of reasons. In this paper, we present allometric equations for aboveground biomass (AGB), belowground biomass (BGB), and total above- and belowground biomass (TABGB) predictions of C. inophyllum L. Data collection was carried out twice (2017 and 2021) from 40 trees in Java, Indonesia. Allometric equations using the natural logarithm of diameter at breast height (lnDBH) and ln height (lnH) for biomass prediction qualified the model’s fit with statistical significance at 95% of the confidence interval for AGB, BGB, and TABGB predictions. The results showed that the linear models using both lnDBH and lnH were well fit and accurate. However, the model with lnDBH is more precise than the model using lnH. Using lnDBH as a predictor, the R2 values were 0.923, 0.945, and 0.932, and MAPE were 24.7, 37.0, and 25.8 for AGB, BGB, and TABGB, respectively. Using lnH as a predictor, the R2 values were 0.887, 0.918, and 0.898 and MAPE were 37.4, 49.0, and 39.8 for AGB, BGB, and TABGB, respectively. Consequently, the driven allometric equations can help accurate biomass quantification for carbon-trading schemes of C. inophyllum L.
format Journal Article
id CGSpace120407
institution CGIAR Consortium
language Inglés
publishDate 2022
publishDateRange 2022
publishDateSort 2022
publisher MDPI
publisherStr MDPI
record_format dspace
spelling CGSpace1204072025-12-08T10:29:22Z Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia Basuki, T.M. Leksono, B. Baral, H. Andini, S. Wahyuni, N.S. Artati, Y. Choi, E. Shin, S. Kim, R. Yang, A.R. Samsudin, Y.B. Windyarini, E. aboveground biomass belowground biomass bioenergy allometry forestry Reliable data on CO2 quantification is increasingly important to quantify the climate benefits of forest landscape restoration and international commitments, such as the Warsaw REDD+ Framework and Nationally Determined Contributions under the Paris Agreement. Calophyllum inophyllum L. (nyamplung as a local name or tamanu tree for the commercial name) is an increasingly popular tree species in forest landscape restoration and bioenergy production for a variety of reasons. In this paper, we present allometric equations for aboveground biomass (AGB), belowground biomass (BGB), and total above- and belowground biomass (TABGB) predictions of C. inophyllum L. Data collection was carried out twice (2017 and 2021) from 40 trees in Java, Indonesia. Allometric equations using the natural logarithm of diameter at breast height (lnDBH) and ln height (lnH) for biomass prediction qualified the model’s fit with statistical significance at 95% of the confidence interval for AGB, BGB, and TABGB predictions. The results showed that the linear models using both lnDBH and lnH were well fit and accurate. However, the model with lnDBH is more precise than the model using lnH. Using lnDBH as a predictor, the R2 values were 0.923, 0.945, and 0.932, and MAPE were 24.7, 37.0, and 25.8 for AGB, BGB, and TABGB, respectively. Using lnH as a predictor, the R2 values were 0.887, 0.918, and 0.898 and MAPE were 37.4, 49.0, and 39.8 for AGB, BGB, and TABGB, respectively. Consequently, the driven allometric equations can help accurate biomass quantification for carbon-trading schemes of C. inophyllum L. 2022-07-05 2022-08-03T03:38:34Z 2022-08-03T03:38:34Z Journal Article https://hdl.handle.net/10568/120407 en Open Access MDPI Basuki, T.M.; Leksono, B.; Baral, H.; Andini, S.; Wahyuni, N.S.; Artati, Y.; Choi, E.; Shin, S.; Kim, R.; Yang, A.-R.; Samsudin, Y.B.; Windyarini, E. 2022. Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia. Forests, 13(7), 1057. https://doi.org/10.3390/f13071057
spellingShingle aboveground biomass
belowground biomass
bioenergy
allometry
forestry
Basuki, T.M.
Leksono, B.
Baral, H.
Andini, S.
Wahyuni, N.S.
Artati, Y.
Choi, E.
Shin, S.
Kim, R.
Yang, A.R.
Samsudin, Y.B.
Windyarini, E.
Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title_full Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title_fullStr Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title_full_unstemmed Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title_short Allometric Equations for the Biomass Estimation of Calophyllum inophyllum L. in Java, Indonesia
title_sort allometric equations for the biomass estimation of calophyllum inophyllum l in java indonesia
topic aboveground biomass
belowground biomass
bioenergy
allometry
forestry
url https://hdl.handle.net/10568/120407
work_keys_str_mv AT basukitm allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT leksonob allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT baralh allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT andinis allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT wahyunins allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT artatiy allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT choie allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT shins allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT kimr allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT yangar allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT samsudinyb allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia
AT windyarinie allometricequationsforthebiomassestimationofcalophylluminophyllumlinjavaindonesia