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Trade-offs between global warming and day length on the start of the carbon uptake period in seasonally cold ecosystems

机译:全球变暖与季节性寒冷生态系统中碳吸收期开始时的白昼长度之间的权衡

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It is well established that warming leads to longer growing seasons in seasonally cold ecosystems. Whether this goes along with an increase in the net ecosystem carbon dioxide (CO_2) uptake is much more controversial. We studied the effects of warming on the start of the carbon uptake period (CUP) of three mountain grasslands situated along an elevational gradient in the Alps. To this end, we used a simple empirical model of the net ecosystem CO_2 exchange, calibrated, and forced with multiyear empirical data from each site. We show that reductions in the quantity and duration of daylight associated with earlier snowmelts were responsible for diminishing returns, in terms of carbon gain, from longer growing seasons caused by reductions in daytime photosynthetic uptake and increases in nighttime losses of CO_2. This effect was less pronounced at high, compared to low, elevations, where the start of the CUP occurred closer to the summer solstice when changes in day length and incident radiation are minimal.
机译:众所周知,在季节性寒冷的生态系统中,变暖会导致更长的生长季节。这是否伴随着生态系统二氧化碳(CO_2)净吸收量的增加,则更具争议性。我们研究了气候变暖对阿尔卑斯山海拔梯度沿线3个山地草原碳吸收期(CUP)开始的影响。为此,我们使用了一个简单的网络生态系统经验模型,CO_2交换、校准和强制使用来自每个站点的多年经验数据。我们表明,与早期融雪相关的日光数量和持续时间的减少是导致碳增加的原因,在碳增加方面,由于白天光合作用吸收减少和夜间CO_2损失增加而导致更长的生长季节。与低海拔地区相比,这种影响在高海拔地区不那么明显,在低海拔地区,CUP的开始发生在接近夏至的地方,此时昼长和入射辐射的变化很小。

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