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Assessing the implications of human land-use change for the transient climate response to cumulative carbon emissions

机译:评估人类土地利用变化对累积碳排放的瞬时气候响应的影响

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Recent research has shown evidence of a linear climate response to cumulative CO2 emissions, which implies that the source, timing, and amount of emissions does not significantly influence the climate response per unit emission. Furthermore, these analyses have generally assumed that the climate response to land-use CO2 emissions is equivalent to that of fossil fuels under the assumption that, once in the atmosphere, the radiative forcing induced by CO2 is not sensitive to the emissions source. However, land-cover change also affects surface albedo and the strength of terrestrial carbon sinks, both of which have an additional climate effect. In this study, we use a coupled climate-carbon cycle model to assess the climate response to historical and future cumulative land-use CO2 emissions, in order to compare it to the response to fossil fuel CO2. We find that when we isolate the CO2-induced (biogeochemical) temperature changes associated with land-use change, then the climate response to cumulative land-use emissions is equivalent to that of fossil fuel CO2. We show further that the globally-averaged albedo-induced biophysical cooling from land-use change is non-negligible and may be of comparable magnitude to the biogeochemical warming, with the result that the net climate response to land-use change is substantially different from a linear response to cumulative emissions. However, our new simulations suggest that the biophysical cooling from land-use change follows its own independent (negative) linear response to cumulative net land-use CO2 emissions, which may provide a useful scaling factor for certain applications when evaluating the full transient climate response to emissions.
机译:最近的研究表明,气候对累积CO2排放具有线性响应,这表明排放的来源,时间和排放量不会显着影响单位排放的气候响应。此外,这些分析通常假设,一旦进入大气,由CO2引起的辐射强迫对排放源不敏感,则对土地使用CO2排放的气候响应与化石燃料的响应等效。但是,土地覆盖的变化也会影响地表反照率和地面碳汇的强度,这两者都具有额外的气候影响。在这项研究中,我们使用耦合的气候-碳循环模型来评估气候对历史和未来土地使用累计CO2排放的响应,以便将其与对化石燃料CO2的响应进行比较。我们发现,当我们隔离与土地利用变化相关的CO2诱导的(生物地球化学)温度变化时,那么对累积土地利用排放的气候响应就等于化石燃料CO2的气候响应。我们进一步表明,全球平均的土地利用变化引起的反照率诱发的生物物理降温是不可忽略的,并且可能与生物地球化学变暖的幅度相当,其结果是,对土地利用变化的净气候响应与对累积排放量的线性响应。然而,我们的新模拟表明,土地利用变化引起的生物物理降温遵循其自身对累积土地利用净二氧化碳排放量的独立(负)线性响应,这在评估完整的瞬态气候响应时可能为某些应用提供有用的比例因子排放。

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