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Maximum warming occurs about one decade after a carbon dioxide emission

机译:二氧化碳排放后约十年发生最大变暖

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Download video View all Environ. Res. Lett. video abstracts It is known that carbon dioxide emissions cause the Earth to warm, but no previous study has focused on examining how long it takes to reach maximum warming following a particular CO2 emission. Using conjoined results of carbon-cycle and physical-climate model intercomparison projects (Taylor et al 2012, Joos et al 2013), we find the median time between an emission and maximum warming is 10.1 years, with a 90% probability range of 6.6–30.7 years. We evaluate uncertainties in timing and amount of warming, partitioning them into three contributing factors: carbon cycle, climate sensitivity and ocean thermal inertia. If uncertainty in any one factor is reduced to zero without reducing uncertainty in the other factors, the majority of overall uncertainty remains. Thus, narrowing uncertainty in century-scale warming depends on narrowing uncertainty in all contributing factors. Our results indicate that benefit from avoided climate damage from avoided CO2 emissions will be manifested within the lifetimes of people who acted to avoid that emission. While such avoidance could be expected to benefit future generations, there is potential for emissions avoidance to provide substantial benefit to current generations.
机译:下载视频查看所有环境。 Res。来吧视频摘要众所周知,二氧化碳的排放会导致地球变暖,但是以前没有研究集中在研究特定的CO2排放达到最大变暖所需的时间。利用碳循环和物理气候模式比对项目的联合结果(Taylor等,2012; Joos等,2013),我们发现排放与最大变暖之间的中位时间为10.1年,概率90%范围为6.6– 30.7年。我们评估了变暖时间和变暖量的不确定性,并将其分为三个影响因素:碳循环,气候敏感性和海洋热惯性。如果将任何一个因素的不确定性减少到零而又不减少其他因素的不确定性,则总体不确定性的大部分仍然存在。因此,缩小世纪尺度变暖的不确定性取决于缩小所有促成因素的不确定性。我们的结果表明,避免二氧化碳排放将避免气候损害,这将在为避免这种排放而采取行动的人们的一生中得到体现。尽管可以预期这种避免会给子孙后代造福,但避免排放的潜力可能会给后代带来实质性的好处。

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