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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Centennial-scale vegetation dynamics and climate variability in SE Europe during Marine Isotope Stage 11 based on a pollen record from Lake Ohrid
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Centennial-scale vegetation dynamics and climate variability in SE Europe during Marine Isotope Stage 11 based on a pollen record from Lake Ohrid

机译:基于来自奥赫里德湖的花粉记录,在海洋同位素阶段11期间SE欧洲的百年植被动态和气候变异性

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摘要

To better understand climate variability during Marine Isotope Stage (MIS) 11, we here present a new, centennial-scale-resolution pollen record from Lake Ohrid (Balkan Peninsula) derived from sediment cores retrieved during an International Continental Scientific Drilling Program (ICDP) campaign. Our palynological data, augmented by quantitative pollen-based climate reconstructions, provide insight into the vegetation dynamics and thus also climate variability in SE Europe during one of the best orbital analogues for the Holocene. Comparison of our palynological results with other proxy data from Lake Ohrid as well as with regional and global climate records shows that the vegetation in SE Europe responded sensitively both to long- and short-term climate change during MIS 11. The chronology of our palynological record is based on orbital tuning, and is further supported by the detection of a new tephra from the Vico volcano, central Italy, dated to 410?±?2 ka. Our study indicates that MIS 11c (~424–398 ka) was the warmest interval of MIS 11. The younger part of the interglacial (i.e., MIS 11b–11a; ~398–367 ka) exhibits a gradual cooling trend passing over into MIS 10. It is characterized by considerable millennial-scale variability as inferred by six abrupt forest-contraction events. Interestingly, the first forest contraction occurred during full interglacial conditions of MIS 11c; this event lasted for ~1.7 kyrs (406.2–404.5 ka) and was characterized by substantial reductions in winter temperature and annual precipitation. Most notably, it occurred ~7 ka before the end of MIS 11c and ~15 ka before the first strong ice-rafted debris event in the North Atlantic. Our findings suggest that millennial-scale climate variability during MIS 11 was established in Southern Europe already during MIS 11c, which is earlier than in the North Atlantic where it is registered only from MIS 11b onwards.
机译:为了更好地了解海洋同位素阶段(MIS)11期间的气候变异性,我们在这里提出了来自在国际大陆科学钻井计划(ICDP)竞选期间检索的沉积物核心的苏州奥赫里德湖(巴尔干半岛)的新百年规模分辨率花粉记录。我们通过基于定量的花粉的气候重建来增强的椎相论数据,提供对植被动态的洞察力,因此在全新世的最佳轨道类似物之一期间也在SE欧洲的气候变异性。与奥赫里德湖的其他代理数据以及区域和全球气候记录的对杨宁数数据的比较表明,SE欧洲的植被在MES 11期间敏感地敏感地回应了长期和短期气候变化。我们的宫颈记录的年表基于轨道调谐,并进一步通过检测意大利vico火山的新Tephra,日期为410?±2ka。我们的研究表明,MIS 11C(〜424-398ka)是MIS 11最温暖的间隔。中间夹裂(即MIS 11B-11A;〜398-367 Ka)的年轻部分展示了流入MIS的逐步冷却趋势10.它的特点​​是六个突然林收缩事件推断出相当大的千年级别变异性。有趣的是,第一个森林收缩发生在MIS 11C的完整内层条件下;此事件持续了〜1.7 kyrs(406.2-404.5 kA),其特点是冬季温度和年降水量的大量减少。最值得注意的是,它发生在MIS 11C结束前〜7 ka,在北大西洋的第一个强大的冰圆形碎片事件前〜15 ka。我们的调查结果表明,在MIS 11C期间,在南欧建立了MES 11期间的千禧年气候变异性,这早于北大西洋早期只从MIS 11B开始注册。

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