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Rate and velocity of climate change caused by cumulative carbon emissions

机译:累积碳排放导致的气候变化速率和速度

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International climate mitigation efforts are focused on limiting increase in global mean temperature, which has been shown to be proportional to cumulative CO2 emissions. However, the ability of natural and human systems to successfully adapt to climatic changes depends on both the magnitude and rate of change, the latter of which will depend on how quickly a given level of cumulative emissions occurs. We show that cumulative CO2 emissions of 4620 Gt CO2 (reached in 2100 in RCP4.5 and 2057 in RCP8.5) produce globally averaged warming rates that are nearly twice as fast in RCP8.5 than RCP4.5 (0.34?±?0.08 °C per decade versus 0.19?±?0.05 °C per decade, respectively). Similarly, the globally averaged velocity of climate change calculated according to the 'nearest equivalent climate' is greater by a factor of ~2 in RCP8.5 than in RCP4.5 (2.51?±?0.67 km yr?1 versus 1.32?±?0.39 km yr?1, respectively), despite equivalent cumulative emissions. These differences in the projected velocity of climate change represent uncertainty for ecosystems that may be unable to adapt to the faster changes. Particularly at risk are boreal forests, of which 48% are projected to experience rates of change beyond their expected adaptive capacity (i.e. 0.3 °C per decade) in RCP4.5, compared with 95% in RCP8.5. Thus, the same budget of cumulative carbon emissions may result in critically different impacts on natural and human systems, depending on the amount of time over which that budget is expended.
机译:国际气候减缓工作的重点是限制全球平均温度的升高,事实表明,该平均温度与累积的CO2排放成正比。但是,自然系统和人类系统成功适应气候变化的能力取决于变化的幅度和速率,而后者和变化速率将取决于给定水平的累积排放发生的速度。我们显示,累积的CO2排放量为4620 Gt CO2(在RCP4.5中达到2100,在RCP8.5中达到2057),产生的全球平均升温速率在RCP8.5中几乎是RCP4.5的两倍(0.34±0.08)。每十年°C与每十年0.19±±0.05°C分别)。同样,根据“最近等效气候”计算得出的全球平均气候变化速度,在RCP8.5中比在RCP4.5中大约2倍(2.51?±?0.67 km yr?1对1.32?±??尽管累积排放量相等,但分别为0.39 km yr?1)。这些预计的气候变化速度差异代表了可能无法适应更快变化的生态系统的不确定性。北方森林尤其面临风险,在RCP4.5中,预计其中48%的变化率将超过其预期的适应能力(即每十年> 0.3°C),而在RCP8.5中则为95%。因此,取决于预算花费的时间长短,相同的累积碳排放预算可能会对自然和人类系统造成严重不同的影响。

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