【2h】

Persistence of climate changes due to a range of greenhouse gases

机译:一系列温室气体导致的气候变化持续存在

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摘要

Emissions of a broad range of greenhouse gases of varying lifetimes contribute to global climate change. Carbon dioxide displays exceptional persistence that renders its warming nearly irreversible for more than 1,000 y. Here we show that the warming due to non-CO2 greenhouse gases, although not irreversible, persists notably longer than the anthropogenic changes in the greenhouse gas concentrations themselves. We explore why the persistence of warming depends not just on the decay of a given greenhouse gas concentration but also on climate system behavior, particularly the timescales of heat transfer linked to the ocean. For carbon dioxide and methane, nonlinear optical absorption effects also play a smaller but significant role in prolonging the warming. In effect, dampening factors that slow temperature increase during periods of increasing concentration also slow the loss of energy from the Earth’s climate system if radiative forcing is reduced. Approaches to climate change mitigation options through reduction of greenhouse gas or aerosol emissions therefore should not be expected to decrease climate change impacts as rapidly as the gas or aerosol lifetime, even for short-lived species; such actions can have their greatest effect if undertaken soon enough to avoid transfer of heat to the deep ocean.
机译:各种不同寿命的温室气体的排放导致全球气候变化。二氧化碳表现出非凡的持久性,使其变暖几乎不可逆转超过1,000年。在这里,我们表明,尽管并非不可逆转,但非二氧化碳温室气体引起的变暖比温室气体浓度自身的人为变化持续的时间明显更长。我们探索了为什么持续变暖不仅取决于给定温室气体浓度的衰减,还取决于气候系统的行为,尤其是与海洋相关的热传递的时间尺度。对于二氧化碳和甲烷,非线性光学吸收效应在延长变暖过程中也起着较小但重要的作用。实际上,如果减少辐射强迫,在浓度增加期间减缓温度升高的阻尼因素也会减缓地球气候系统能量的损失。因此,不应期望通过减少温室气体或气溶胶排放量的方式来减少气候变化的办法,以至于像气体或气溶胶的寿命一样快地减少气候变化的影响,即使是对于短命物种也是如此;如果尽快采取措施避免热量转移到深海,这些措施将发挥最大作用。

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