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Aboveground biomass partitioning and additive models for Combretum glutinosum and Terminalia laxifiora in West Africa

机译:西非Combretum glutinosum和Terminalia laxifiora的地上生物量分配和添加剂模型

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Accurate estimates of aboveground biomass (AGB) strongly depend on the suitability and precision of allometric models. Although additive allometric equations are expected to reduce uncertainties due to additivity property between biomass of tree components, methods for developing biomass equations do not comply with the additivity property. This study aimed to evaluate biomass allocation patterns within tree components, and to develop additive allometric equations for Combretum glutinosum and Terminalia laxiflora in West Africa. Sixty trees were destructively sampled and measured for stem, branch and leaf biomass in Sudanian savannas of Burkina Faso. Biomass allocation to stem, branch and leaf was assessed by calculating the biomass fractions for each component. Bivariate relationships between biomass fraction and diameter at beast height (dbh) were further examined. For each biomass component we tested three non-linear allometric equations based on dbh alone, and dbh in combination with height and/or crown diameter as independent variables. Seemingly Unrelated Regressions were used to fit a system of additive biomass allometric equations. Branch biomass accounted for between 60 and 70% of the AGB. Branch mass fraction increased with increasing stem diameter while a reverse trend was observed for leaf and stem mass fractions. The decline in the mass fraction was more pronounced for the leaf than the stem. Additive biomass models developed for the two species exhibited good model fit and performance, with explained variance of 68-89%. The models developed in this study provide a robust estimation of tree biomass components and can be used in Sudanian savannas of West Africa.
机译:地上生物量(AGB)的准确估算在很大程度上取决于异速测量模型的适用性和精度。尽管由于树成分的生物量之间的可加性,可期望添加的异速方程可减少不确定性,但是用于开发生物量方程的方法并不符合可加性。这项研究旨在评估树木成分内的生物量分配模式,并为西非的Com Comtum glutinosum和Terminalia laxiflora建立附加的异速方程。在布基纳法索的苏丹大草原中,对60棵树进行了破坏性采样并测量了茎,枝和叶的生物量。通过计算每种成分的生物质分数来评估对茎,枝和叶的生物量分配。进一步检查了生物量分数与野兽高度(dbh)直径之间的双变量关系。对于每种生物质组分,我们测试了三个单独基于dbh的非线性方程式,并且将dbh与高度和/或树冠直径相结合作为自变量。似乎不相关的回归用于拟合加性生物量异速方程。分支生物量占AGB的60%至70%。枝的质量分数随茎直径的增加而增加,而叶和茎的质量分数则观察到相反的趋势。叶子的质量分数下降比茎的下降更为明显。为这两个物种开发的加性生物量模型显示出良好的模型拟合和性能,解释方差为68-89%。本研究开发的模型提供了树木生物量成分的可靠估计,可用于西非的苏丹大草原。

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