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Soil is the main predictor of secondary rain forest estimated aboveground biomass across a Neotropical landscape

机译:土壤是次雨森林的主要预测因子估计在新景观的地上生物量

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We studied the relative effects of landscape configuration, environmental variables, forest age, and spatial variables on estimated aboveground biomass (AGB) in Costa Rican secondary rain forests patches. We measured trees &= 5 cm dbh in 24, 0.25 ha plots and estimated AGB for trees 5-24.9 cm dbh and for trees &25 cm dbh using two allometric equations based on multispecies models using tree dbh and wood-specific gravity. AGB averaged 87.3 Mg/ha for the 24 plots (not including remnant trees) and 123.4 Mg/ha including remnant trees (20 plots). There was no effect of forest age on AGB. Variation partitioning analysis showed that soils, climate, landscape configuration, and space together explained 61% of tree AGB variance. When controlling for the effects of the other three variables, only soils remained significant. Soil properties, specifically K and Cu, had the strongest independent effect on AGB (variation partitioning, R-2 = 0.17, p = 0.0310), indicating that in this landscape, AGB variation in secondary forest patches is influenced by soil chemical properties. Elucidating the relative influence of soils in AGB variation is critical for understanding changes associated with land cover modification across Neotropical landscapes, as it could have important consequences for land use planning since secondary forests are considered carbon sinks.
机译:我们研究了景观配置,环境变量,森林时代和空间变量对哥斯达黎加二级雨林贴片的地上生物量(AGB)的相对影响。我们测量了树木& = 5cm dbh 24,0.25公顷的dbh和树木5-24.9 cm dbh和树木的agb; 25cm dbh使用基于树dbh和木材的多数式模型,使用两个同种型方程-比重。对于24个地块(不包括剩余树木)和123.4 mg /公顷(包括残余树)(20个地块),AGB平均为87.3 mg / ha。森林时代对AGB没有影响。变异分区分析表明,土壤,气候,景观配置和空间共同解释了树AGB方差的61%。当控制其他三个变量的效果时,只有土壤仍然存在显着。土壤性质,特别是K和Cu,对AgB具有最强的独立作用(变异分配,R-2 = 0.17,P = 0.0310),表明在这种景观中,二次森林斑块的AGB变异受土壤化学性质的影响。阐明AGB变异中的土壤的相对影响对于了解与新景观景观的土地覆盖修改有关的变化至关重要,因为它可能对土地利用规划具有重要影响,因为二次森林被认为是碳汇。

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