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Dynamics of aboveground carbon stocks in a selectively logged tropical forest

机译:选择性采伐的热带森林中地上碳储量的动态

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The expansion of selective logging in tropical forests may be an important source of global carbon emissions. However, the effects of logging practices on the carbon cycle have never been quantified over long periods of time. We followed the fate of more than 60 000 tropical trees over 23 years to assess changes in aboveground carbon stocks in 48 1.56-ha plots in French Guiana that represent a gradient of timber harvest intensities, with and without intensive timber stand improvement (TSI) treatments to stimulate timber tree growth. Conventional selective logging led to emissions equivalent to more than a third of aboveground carbon stocks in plots without TSI (85 Mg C/ha), while plots with TSI lost more than one-half of aboveground carbon stocks (142 Mg C/ha). Within 20 years of logging, plots without TSI sequestered aboveground carbon equivalent to more than 80% of aboveground carbon lost to logging (-70.7 Mg C/ha), and our simulations predicted an equilibrium aboveground carbon balance within 45 years of logging. In contrast, plots with intensive TSI are predicted to require more than 100 years to sequester aboveground carbon lost to emissions. These results indicate that in some tropical forests aboveground carbon storage can be recovered within half a century after conventional logging at moderate harvest intensities.
机译:热带森林中选择性伐木的扩大可能是全球碳排放的重要来源。但是,伐木方法对碳循环的影响在很长一段时间内从未被量化。在23年的时间里,我们追踪了60,000多棵热带树木的命运,以评估法属圭亚那48个1.56公顷土地中地上碳储量的变化,这些土地代表了木材采伐强度的梯度,有和没有进行密集的林分改良(TSI)处理刺激木树生长。传统的选择性测井导致的排放量相当于没有TSI的地块碳排放量的三分之一以上(85 Mg C / ha),而具有TSI的地块的碳排放量减少了一半以上(142 Mg C / ha)。在测井的20年内,没有TSI的土地封存了地上碳,相当于失去了测井的地上碳的80%以上(-70.7 Mg C / ha),我们的模拟预测在测井的45年内将达到平衡的地上碳平衡。相反,预计具有密集TSI的地块将需要100年以上的时间来隔离因排放而损失的地上碳。这些结果表明,在某些热带森林中,在中等采伐强度下进行常规伐木后,地上碳储量可以在半个世纪之内恢复。

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