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Dominant factors controlling glacial and interglacial variations in the treeline elevation in tropical Africa

机译:控制热带非洲林线海拔上冰川和冰川间变化的主要因素

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The knowledge of tropical palaeoclimates is crucial for understanding global climate change, because it is a test bench for general circulation models that are ultimately used to predict future global warming. A longstanding issue concerning the last glacial maximum in the tropics is the discrepancy between the decrease in sea-surface temperatures reconstructed from marine proxies and the high-elevation decrease in land temperatures estimated from indicators of treeline elevation. In this study, an improved inverse vegetation modeling approach is used to quantitatively reconstruct palaeoclimate and to estimate the effects of different factors (temperature, precipitation, and atmospheric CO_2 concentration) on changes in treeline elevation based on a set of pollen data covering an altitudinal range from 100 to 3,140 m above sea level in Africa. We show that lowering of the African treeline during the last glacial maximum was primarily triggered by regional drying, especially at upper elevations, and was amplified by decreases in atmospheric CO_2 concentration and perhaps temperature. This contrasts with scenarios for the Holocene and future climates, in which the increase in treeline elevation will be dominated by temperature. Our results suggest that previous temperature changes inferred from tropical treeline shifts may have been overestimated for low-CO_2 glacial periods, because the limiting factors that control changes in treeline elevation differ between glacial and interglacial periods.
机译:热带古气候的知识对于理解全球气候变化至关重要,因为它是最终用于预测未来全球变暖的一般循环模型的测试平台。关于热带地区最后一个冰期最大值的长期存在的问题是,从海洋代理重建的海面温度下降与根据树线高程指标估计的陆地温度高海拔下降之间存在差异。在这项研究中,基于一组覆盖海拔高度范围的花粉数据,采用了一种改进的逆向植被建模方法来定量重建古气候,并估计不同因素(温度,降水和大气CO_2浓度)对树线海拔变化的影响。非洲海拔100至3,140 m。我们表明,在最后一次冰川最大时期,非洲林线的下降主要是由区域干燥引起的,尤其是在高海拔地区,并且被大气中CO_2浓度和温度的降低所放大。这与全新世和未来气候的情景形成对比,在未来情景中,树线高度的增加将由温度决定。我们的结果表明,对于低CO_2冰期,从热带林线转变推断出的先前温度变化可能被高估了,因为控制树线高度变化的限制因素在冰期和间冰期之间有所不同。

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