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Allometric equations for below-ground biomass of four key woody species in West African savanna-woodlands

机译:西非热带稀树草原林地四种主要木本物种地下生物量的异速方程

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Accurate estimates of both above-ground biomass (AGB) and below-ground biomass (BGB) are essential for estimating carbon (C) balances at various geographical scales and formulating effective climate change mitigation programs. However, estimating BGB is challenging, particularly for forest ecosystems, so robust allometric equations are needed. To obtain such equations for savanna-woodlands of the West African north sudanian zone, we selected four common native woody species (Anogeissus leiocarpa (DC.) Guill. & Perr., Detarium microcarpum Guill. & Perr., Piliostigma thonningii (Schumach.) Milne-Redh. and Vitellaria paradoxa C.F. Gaertn.). At two sites in Burkina Faso, we determined the BGB of 30 trees of each of these species by excavation, and measured various above-ground dimensional variables. The root:shoot ratio varied widely among the species, from 0.1 to 3.4. Depending on the species, allometric equations based on stem basal area at 20 cm height, basal area at breast height and tree height explained 50–95% of the variation in BGB. The best generic equation we obtained, based on basal area at 20 cm, explained 60% of the variation in BGB across the species. Three previously published generic allometric equations underestimated BGB by 8 to 63%. The presented equations should significantly improve the accuracy of BGB estimates in savanna-woodlands and help avoid costly needs to excavate root systems.
机译:准确估算地上生物量(AGB)和地下生物量(BGB)对于估算各种地理规模的碳(C)平衡并制定有效的减缓气候变化计划至关重要。但是,估算BGB极具挑战性,尤其是对于森林生态系统而言,因此需要鲁棒的异速方程。为了获得西非北苏丹地区大草原林地的等式,我们选择了四种常见的原生木本物种(Anogeissus leiocarpa(DC。)Guill。&Perr。,Detarium microcarpum Guill。&Perr。,Piliostigma thonningii(Schumach。) Milne-Redh。和Vitellaria paradoxa CF Gaertn。)。在布基纳法索的两个地点,我们通过挖掘确定了每种树种的30棵树的BGB,并测量了各种地上尺寸变量。根与茎之间的比率在物种之间变化很大,从0.1到3.4。根据不同的物种,基于20厘米高的茎基部面积,胸部高度的基部面积和树木高度的异速生长方程解释了BGB变化的50–95%。我们基于20 cm的基础面积获得的最佳通用方程式解释了整个物种中BGB变化的60%。先前发布的三个通用测速方程低估了BGB 8%至63%。提出的方程式应显着提高大草原林地中BGB估计的准确性,并有助于避免挖掘根系的昂贵需求。

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