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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Could increased boreal forest ecosystem productivity offset carbon losses from increased disturbances?
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Could increased boreal forest ecosystem productivity offset carbon losses from increased disturbances?

机译:北方森林生态系统生产力的提高能否抵消干扰增加带来的碳损失?

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To understand how boreal forest carbon (C) dynamics might respond to anticipated climatic changes, we must consider two important processes. First, projected climatic changes are expected to increase the frequency of fire and other natural disturbances that would change the forest age-class structure and reduce forest C stocks at the landscape level. Second, global change may result in increased net primary production (NPP). Could higher NPP offset anticipated C losses resulting from increased disturbances? We used the Carbon Budget Model of the Canadian Forest Sector to simulate rate changes in disturbance, growth and decomposition on a hypothetical boreal forest landscape and to explore the impacts of these changes on landscape-level forest C budgets. We found that significant increases in net ecosystem production (NEP) would be required to balance C losses from increased natural disturbance rates. Moreover, increases in NEP would have to be sustained over several decades and be widespread across the landscape. Increased NEP can only be realized when NPP is enhanced relative to heterotrophic respiration. This study indicates that boreal forest C stocks may decline as a result of climate change because it would be difficult for enhanced growth to offset C losses resulting from anticipated increases in disturbances.
机译:要了解北方森林碳(C)动态如何响应预期的气候变化,我们必须考虑两个重要过程。首先,预计的气候变化将增加火灾和其他自然干扰的频率,这将改变森林的年龄等级结构并减少景观一级的森林碳储量。其次,全球变化可能导致净初级生产(NPP)增加。较高的NPP是否可以抵消由于干扰增加而导致的预期C损失?我们使用了加拿大森林部门的碳预算模型来模拟假设的北方森林景观扰动,生长和分解的速率变化,并探讨这些变化对景观级森林C预算的影响。我们发现,为了平衡由于自然干扰率增加而造成的碳损失,需要大幅增加净生态系统产量(NEP)。此外,NEP的增长将必须持续数十年,并在整个环境中广泛传播。仅当相对异养呼吸增强NPP时,才能实现NEP增加。这项研究表明,由于气候变化,北方森林的碳储量可能会下降,因为增加生长将难以抵消预期的干扰增加导致的碳损失。

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