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证据表明,亚马逊森林的碳储存和碳利用效率具有很强的季节性。

Evidence for strong seasonality in the carbon storage and carbon use efficiency of an Amazonian forest.

机构信息

School of Geosciences, University of Edinburgh, Edinburgh, EH9 3JN, UK.

出版信息

Glob Chang Biol. 2014 Mar;20(3):979-91. doi: 10.1111/gcb.12375. Epub 2014 Jan 20.

Abstract

The relative contribution of gross primary production and ecosystem respiration to seasonal changes in the net carbon flux of tropical forests remains poorly quantified by both modelling and field studies. We use data assimilation to combine nine ecological time series from an eastern Amazonian forest, with mass balance constraints from an ecosystem carbon cycle model. The resulting analysis quantifies, with uncertainty estimates, the seasonal changes in the net carbon flux of a tropical rainforest which experiences a pronounced dry season. We show that the carbon accumulation in this forest was four times greater in the dry season than in the wet season and that this was accompanied by a 5% increase in the carbon use efficiency. This seasonal response was caused by a dry season increase in gross primary productivity, in response to radiation and a similar magnitude decrease in heterotrophic respiration, in response to drying soils. The analysis also predicts increased carbon allocation to leaves and wood in the wet season, and greater allocation to fine roots in the dry season. This study demonstrates implementation of seasonal variations in parameters better enables models to simulate observed patterns in data. In particular, we highlight the necessity to simulate the seasonal patterns of heterotrophic respiration to accurately simulate the net carbon flux seasonal tropical forest.

摘要

通过建模和实地研究,都难以准确量化总初级生产力和生态系统呼吸作用对热带森林净碳通量季节性变化的相对贡献。我们使用数据同化,将来自亚马逊东部森林的 9 个生态时间序列与生态系统碳循环模型的质量平衡约束相结合。由此产生的分析以不确定度估计量化了经历明显旱季的热带雨林的净碳通量季节性变化。结果表明,在旱季,这片森林的碳积累量比雨季高出四倍,同时碳利用效率提高了 5%。这种季节性响应是由总初级生产力在旱季的增加引起的,这是对辐射的响应,而异养呼吸在旱季的相似幅度下降,这是对土壤干燥的响应。该分析还预测了雨季叶片和木材的碳分配增加,以及旱季细根的更大分配。本研究表明,更好地实施参数季节性变化使模型能够更好地模拟数据中的观测模式。特别是,我们强调需要模拟异养呼吸的季节性模式,以准确模拟净碳通量季节性热带森林。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d56/4298765/86e733353d4d/gcb0020-0979-f1.jpg

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