首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Through enhanced tree dynamics carbon dioxide enrichment may cause tropical forests to lose carbon.
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Through enhanced tree dynamics carbon dioxide enrichment may cause tropical forests to lose carbon.

机译:通过增强树木动态二氧化碳的富集可能导致热带森林失去碳。

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摘要

The fixation and storage of C by tropical forests, which contain close to half of the globe's biomass C, may be affected by elevated atmospheric CO2 concentration. Classical theoretical approaches assume a uniform stimulation of photosynthesis and growth across taxa. Direct assessments of the C balance either by flux studies or by repeated forest inventories also suggest a current net uptake, although magnitudes sometimes exceed those missing required to balance the global C cycle. Reasons for such discrepancies may lie in the nature of forest dynamics and in differential responses of taxa or plant functional types. In this contribution I argue that CO2 enrichment may cause forests to become more dynamic and that faster tree turnover may in fact convert a stimulatory effect of elevated CO2 on photosynthesis and growth into a long-term net biomass C loss by favouring shorter-lived trees of lower wood density. At the least, this is a scenario that deserves inclusion into long-term projections of the C relations of tropical forests. Species and plant functional type specific responses ('biodiversity effects') and forest dynamics need to be accounted for in projections of future C storage and cycling in tropical forests.
机译:含有接近全球生物量碳一半的热带森林对碳的固定和储存可能会受到大气CO2浓度升高的影响。经典的理论方法假设整个类群对光合作用和生长具有统一的刺激作用。通过通量研究或通过重复的森林清单对碳平衡的直接评估也表明当前的净吸收量,尽管其数量有时会超过平衡全球碳循环所需的数量。这种差异的原因可能在于森林动态的性质以及分类单元或植物功能类型的不同响应。在这篇论文中,我认为二氧化碳的富集可能会使森林变得更有活力,树木的快速周转实际上可以通过偏爱寿命较短的乔木来将二氧化碳升高对光合作用和生长的刺激作用转化为长期的净生物量碳损失。降低木材密度。至少,这种情况值得对热带森林的碳关系进行长期预测。物种和植物功能类型的特殊反应(“生物多样性效应”)和森林动态需要在热带森林中未来碳储存和循环的预测中加以考虑。

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