Javascript must be enabled to continue!
Additive Allometric Equations to Improve Aboveground Biomass Estimation for Mongolian Pine Plantations in Mu Us Sandy Land, Inner Mongolia, China
View through CrossRef
Afforestation is conducive to improving ecosystem service functions and ecosystem diversity in the Mu Us Sandy Land, however, the important attribute of biomass for Mongolian pine (Pinus sylvestris var. mongolica Litv.) plantations has yet to be accurately evaluated. This study aimed to develop additive allometric biomass equations for the species and evaluate biomass partitioning patterns within tree components. A total of 131 trees were measured for stem, branch, and leaf biomass by destructively sampling and tree climbing, with the latter as a supplement. For each biomass component, we tested three equations with the diameter at breast (D) alone, height (H) as additional, and diameter in combination with height (D2H) as predictors using the weighted least squared method. Weighted nonlinear seemingly unrelated regression was adopted to fit a system of additive allometric biomass equations utilizing the selected equations. A leave-one-out cross-validation method (the jackknife procedure) was used to assess the predictive ability. The biomass partitioning pattern was evaluated by calculating the ratios. The results revealed that the diameter alone is a good predictor for branches and foliage biomass estimates, while the stem requires H included to improve estimation accuracy. Mongolian pine allocates relatively more biomass to the crown (51.4%) compared to the stem (48.6%). Branch biomass fraction increased monotonously with increasing tree size while a reverse trend was observed for foliage. In conclusion, the additive models developed in this study provide a robust biomass estimation and can be extensively used to estimate Mongolian pine forests biomass in Mu Us Sandy Land.
Title: Additive Allometric Equations to Improve Aboveground Biomass Estimation for Mongolian Pine Plantations in Mu Us Sandy Land, Inner Mongolia, China
Description:
Afforestation is conducive to improving ecosystem service functions and ecosystem diversity in the Mu Us Sandy Land, however, the important attribute of biomass for Mongolian pine (Pinus sylvestris var.
mongolica Litv.
) plantations has yet to be accurately evaluated.
This study aimed to develop additive allometric biomass equations for the species and evaluate biomass partitioning patterns within tree components.
A total of 131 trees were measured for stem, branch, and leaf biomass by destructively sampling and tree climbing, with the latter as a supplement.
For each biomass component, we tested three equations with the diameter at breast (D) alone, height (H) as additional, and diameter in combination with height (D2H) as predictors using the weighted least squared method.
Weighted nonlinear seemingly unrelated regression was adopted to fit a system of additive allometric biomass equations utilizing the selected equations.
A leave-one-out cross-validation method (the jackknife procedure) was used to assess the predictive ability.
The biomass partitioning pattern was evaluated by calculating the ratios.
The results revealed that the diameter alone is a good predictor for branches and foliage biomass estimates, while the stem requires H included to improve estimation accuracy.
Mongolian pine allocates relatively more biomass to the crown (51.
4%) compared to the stem (48.
6%).
Branch biomass fraction increased monotonously with increasing tree size while a reverse trend was observed for foliage.
In conclusion, the additive models developed in this study provide a robust biomass estimation and can be extensively used to estimate Mongolian pine forests biomass in Mu Us Sandy Land.
Related Results
Inner Mongolia, Outer Mongolia
Inner Mongolia, Outer Mongolia
The Mongolian Empire, which reigned over the Eurasia Continent, was a great empire in the Middle Ages. Now, however, it is a divided nation, with a current population of about 10 m...
Destructive sampling-based allometric equations for biomass and carbon estimation in Acacia hybrid plantations in Southeastern Vietnam
Destructive sampling-based allometric equations for biomass and carbon estimation in Acacia hybrid plantations in Southeastern Vietnam
Abstract. Ha NT, Bao TQ, Tuan NT, Rodríguez-Hernández DI, Dung NT, Ngoan TT. 2025. Destructive sampling-based allometric equations for biomass and carbon estimation in Acacia hybri...
Allometric equation for estimating the aboveground biomass of Gentiana algida, Gentiana macrophylla in Mongolia
Allometric equation for estimating the aboveground biomass of Gentiana algida, Gentiana macrophylla in Mongolia
The traditional method of calculating plant biomass involves harvesting plant yields and measuring the weight difference between wet and dry samples. However, this method can have ...
A comparison of Mongolian basic words between Mongolia and China’s Inner Mongolia autonomous region: Focusing on the classical Mongolian language study publishedin China’s Inner Mongolia autonomous region
A comparison of Mongolian basic words between Mongolia and China’s Inner Mongolia autonomous region: Focusing on the classical Mongolian language study publishedin China’s Inner Mongolia autonomous region
In this paper, the basic vocabulary of both regions was compared and analyzed based on the classical Mongolian language study books of Mongolia and China’s Inner Mongolia Autonomou...
Allometric Equations for Aboveground Biomass Estimations of Four Dry Afromontane Tree Species
Allometric Equations for Aboveground Biomass Estimations of Four Dry Afromontane Tree Species
Abstract
Background: Tree species based developing allometric equations are important because they contain the largest proportion of total biomass and carbon stocks of fore...
Productivity of seedlings of Scots pine on alluvial sands of natural and man-made origin
Productivity of seedlings of Scots pine on alluvial sands of natural and man-made origin
Purpose. To find out quantitative physical and water indicators for which there are significant changes in forest vegetation properties in alluvial sands, as well as to trace their...
Estimation of Aboveground Oil Palm Biomass in a Mature Plantation in the Congo Basin
Estimation of Aboveground Oil Palm Biomass in a Mature Plantation in the Congo Basin
Agro-industrial oil palm plantations are becoming increasingly established in the Congo Basin (West Equatorial Africa) for mainly economic reasons. Knowledge of oil palm capacity t...
Buddhist Art and Architecture in Mongolia
Buddhist Art and Architecture in Mongolia
Mongolian Buddhist art and architecture were largely unknown in Western academic literature before the opening of Mongolia and Russia in 1990 and of China in the 1980s, followed by...

