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二氧化碳浓度升高条件下泥炭地溶解有机碳的输出

Export of dissolved organic carbon from peatlands under elevated carbon dioxide levels.

作者信息

Freeman C, Fenner N, Ostle N J, Kang H, Dowrick D J, Reynolds B, Lock M A, Sleep D, Hughes S, Hudson J

机构信息

School of Biological Sciences, University of Wales, Bangor LL57 2UW, UK.

出版信息

Nature. 2004 Jul 8;430(6996):195-8. doi: 10.1038/nature02707.

Abstract

Peatlands represent a vast store of global carbon. Observations of rapidly rising dissolved organic carbon concentrations in rivers draining peatlands have created concerns that those stores are beginning to destabilize. Three main factors have been put forward as potential causal mechanisms, but it appears that two alternatives--warming and increased river discharge--cannot offer satisfactory explanations. Here we show that the third proposed mechanism, namely shifting trends in the proportion of annual rainfall arriving in summer, is similarly unable to account for the trend. Instead we infer that a previously unrecognized mechanism--carbon dioxide mediated stimulation of primary productivity--is responsible. Under elevated carbon dioxide levels, the proportion of dissolved organic carbon derived from recently assimilated carbon dioxide was ten times higher than that of the control cases. Concentrations of dissolved organic carbon appear far more sensitive to environmental drivers that affect net primary productivity than those affecting decomposition alone.

摘要

泥炭地是全球碳的巨大储存库。对流经泥炭地的河流中溶解有机碳浓度迅速上升的观测引发了人们对这些碳库开始不稳定的担忧。有三个主要因素被提出作为潜在的因果机制,但似乎其中两个因素——气候变暖和河流流量增加——无法给出令人满意的解释。在这里我们表明,第三个提出的机制,即夏季降雨占年降雨量比例的变化趋势,同样无法解释这一趋势。相反,我们推断是一个先前未被认识到的机制——二氧化碳介导的初级生产力刺激——在起作用。在二氧化碳浓度升高的情况下,源自最近同化的二氧化碳的溶解有机碳比例比对照情况高十倍。溶解有机碳浓度似乎对影响净初级生产力的环境驱动因素比对仅影响分解的因素更为敏感。

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