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Allometric models for estimating aboveground biomass and biomass allocation of capixingui trees (Croton floribundus Spreng.) in an agrisilvicultural system.

机译:农业农业系统中卡比辛基树(Croton floribundus Spreng。)的地上生物量和生物量分配的异度模型。

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摘要

The objective of this study was to select allometric models to estimate total and pooled aboveground biomass of 4.5-year-old capixingui trees established in an agrisilvicultural system. Aboveground biomass distribution of capixingui was also evaluated. Single- (diameter at breast height [DBH] or crown diameter or stem diameter as the independent variable) and double-entry (DBH or crown diameter or stem diameter and total height as independent variables) models were studied. The estimated total biomass was 17.3 t.ha-1, corresponding to 86.6 kg per tree. All models showed a good fit to the data (R2 ad > 0.85) for bole, branches, and total biomass. DBH-based models presented the best residual distribution. Model lnW = b0 + b1*lnDBH can be recommended for aboveground biomass estimation. Lower coefficients were obtained for leaves (R2 ad > 82%). Biomass distribution followed the order: bole>branches>leaves. Bole biomass percentage decreased with increasing DBH of the trees, whereas branch biomass increased.
机译:这项研究的目的是选择异速生长模型来估计在农业造林系统中建立的4.5年历史的卡比辛基树的总和合并地上生物量。还评估了Capixingui的地上生物量分布。研究了单(胸高直径[DBH]或冠直径或茎直径作为自变量)和双进入(DBH或冠直径或茎直径和总高度作为自变量)模型。估计的总生物量为17.3 t.ha-1,相当于每棵树86.6 kg。所有模型均显示出与胆,枝和总生物量的数据非常吻合(R2 ad> 0.85)。基于DBH的模型提供了最佳的残差分布。对于地上生物量估计,建议使用lnW = b0 + b1 * lnDBH模型。叶片的系数较低(R2 ad> 82%)。生物质分布遵循以下顺序:鲍尔>分支>叶。树木生物量的百分比随树DBH的增加而降低,而树枝生物量则增加。

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