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自然气溶胶对间接强迫不确定性的巨大贡献。

Large contribution of natural aerosols to uncertainty in indirect forcing.

机构信息

School of Earth and Environment, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Nature. 2013 Nov 7;503(7474):67-71. doi: 10.1038/nature12674.

Abstract

The effect of anthropogenic aerosols on cloud droplet concentrations and radiative properties is the source of one of the largest uncertainties in the radiative forcing of climate over the industrial period. This uncertainty affects our ability to estimate how sensitive the climate is to greenhouse gas emissions. Here we perform a sensitivity analysis on a global model to quantify the uncertainty in cloud radiative forcing over the industrial period caused by uncertainties in aerosol emissions and processes. Our results show that 45 per cent of the variance of aerosol forcing since about 1750 arises from uncertainties in natural emissions of volcanic sulphur dioxide, marine dimethylsulphide, biogenic volatile organic carbon, biomass burning and sea spray. Only 34 per cent of the variance is associated with anthropogenic emissions. The results point to the importance of understanding pristine pre-industrial-like environments, with natural aerosols only, and suggest that improved measurements and evaluation of simulated aerosols in polluted present-day conditions will not necessarily result in commensurate reductions in the uncertainty of forcing estimates.

摘要

人为气溶胶对云滴浓度和辐射特性的影响是工业化时期气候辐射强迫的最大不确定性之一的来源。这种不确定性影响了我们估计气候对温室气体排放的敏感性的能力。在这里,我们对一个全球模型进行了敏感性分析,以量化由于气溶胶排放和过程的不确定性而导致的工业化时期云辐射强迫的不确定性。我们的结果表明,自 1750 年以来,气溶胶强迫的方差中有 45%是由于自然排放的火山二氧化硫、海洋二甲基硫、生物挥发性有机碳、生物质燃烧和海雾的不确定性造成的。只有 34%的方差与人为排放有关。结果表明,理解只有自然气溶胶的原始类似工业化前的环境非常重要,并表明在污染的现代条件下改进对模拟气溶胶的测量和评估不一定会导致强迫估计不确定性的相应降低。

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