首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Drier summers cancel out the CO2 uptake enhancement induced by warmer springs.
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Drier summers cancel out the CO2 uptake enhancement induced by warmer springs.

机译:夏季比较干燥,抵消了春季暖和引起的二氧化碳吸收增加。

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摘要

An increase in photosynthetic activity of the northern hemisphere terrestrial vegetation, as derived from satellite observations, has been reported in previous studies. The amplitude of the seasonal cycle of the annually detrended atmospheric CO(2) in the northern hemisphere (an indicator of biospheric activity) also increased during that period. We found, by analyzing the annually detrended CO(2) record by season, that early summer (June) CO(2) concentrations indeed decreased from 1985 to 1991, and they have continued to decrease from 1994 up to 2002. This decrease indicates accelerating springtime net CO(2) uptake. However, the CO(2) minimum concentration in late summer (an indicator of net growing-season uptake) showed no positive trend since 1994, indicating that lower net CO(2) uptake during summer cancelled out the enhanced uptake during spring. Using a recent satellite normalized difference vegetation index data set and climate data, we show that this lower summer uptake is probably the result of hotter and drier summers in both mid and high latitudes, demonstrating that a warming climate does not necessarily lead to higher CO(2) growing-season uptake, even in high-latitude ecosystems that are considered to be temperature limited.
机译:在先前的研究中,已经报道了从卫星观测到的北半球陆地植被的光合活性增加。在此期间,北半球(生物圈活动指标)每年下降趋势的大气CO(2)的季节性周期的振幅也增加了。通过按季节分析年度趋势CO(2)记录,我们发现初夏(6月)的CO(2)浓度确实从1985年到1991年有所下降,并且从1994年到2002年一直在下降。这种下降表明加速了春季净吸收CO(2)。然而,自1994年以来,夏末的最低CO(2)浓度(生长季节净吸收量的指标)没有显示出任何积极的趋势,这表明夏季较低的净CO(2)吸收量抵消了春季的吸收量增加。利用最近的卫星归一化植被指数数据集和气候数据,我们表明,较低的夏季吸收量可能是中高纬地区夏季炎热干燥的结果,表明气候变暖并不一定会导致较高的CO( 2)即使在被认为是温度受限的高纬度生态系统中,也要吸收生长季节。

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