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Detection of a direct carbon dioxide effect in continental river runoff records.

机译:在大陆河流径流记录中检测到直接的二氧化碳效应。

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Continental runoff has increased through the twentieth century despite more intensive human water consumption. Possible reasons for the increase include: climate change and variability, deforestation, solar dimming, and direct atmospheric carbon dioxide (CO2) effects on plant transpiration. All of these mechanisms have the potential to affect precipitation and/or evaporation and thereby modify runoff. Here we use a mechanistic land-surface model and optimal fingerprinting statistical techniques to attribute observational runoff changes into contributions due to these factors. The model successfully captures the climate-driven inter-annual runoff variability, but twentieth-century climate alone is insufficient to explain the runoff trends. Instead we find that the trends are consistent with a suppression of plant transpiration due to CO2-induced stomatal closure. This result will affect projections of freshwater availability, and also represents the detection of a direct CO2 effect on the functioning ofthe terrestrial biosphere.
机译:尽管人类用水量增加,但在整个二十世纪,大陆径流仍在增加。增加的可能原因包括:气候变化和多变性,森林砍伐,日光暗淡以及大气中二氧化碳对植物蒸腾的直接影响。所有这些机制都有可能影响降水和/或蒸发,从而改变径流。在这里,我们使用机械地表模型和最佳指纹统计技术,将观测到的径流变化归因于这些因素。该模型成功地捕获了气候驱动的年际径流变异性,但是仅20世纪的气候不足以解释径流趋势。相反,我们发现这种趋势与由于CO2诱导的气孔关闭而抑制植物蒸腾作用相一致。这一结果将影响对淡水可利用性的预测,也代表了对陆地生物圈功能的直接二氧化碳影响的检测。

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