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Insolation driven biomagnetic response to the Holocene Warm Period in semi-arid East Asia

机译:半干旱东亚地区全新世对暖全新世的生物磁响应

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The Holocene Warm Period (HWP) provides valuable insights into the climate system and biotic responses to environmental variability and thus serves as an excellent analogue for future global climate changes. Here we document, for the first time, that warm and wet HWP conditions were highly favourable for magnetofossil proliferation in the semi-arid Asian interior. The pronounced increase of magnetofossil concentrations at ~9.8?ka and decrease at ~5.9?ka in Dali Lake coincided respectively with the onset and termination of the HWP, and are respectively linked to increased nutrient supply due to postglacial warming and poor nutrition due to drying at ~6?ka in the Asian interior. The two-stage transition at ~7.7?ka correlates well with increased organic carbon in middle HWP and suggests that improved climate conditions, leading to high quality nutrient influx, fostered magnetofossil proliferation. Our findings represent an excellent lake record in which magnetofossil abundance is, through nutrient availability, controlled by insolation driven climate changes.
机译:全新世温暖期(HWP)提供了有关气候系统和生物对环境变化的反应的宝贵见解,因此可以作为未来全球气候变化的绝佳模拟。在这里,我们首次记录到温暖和湿润的HWP条件对于半干旱亚洲内部的磁化石扩散非常有利。大理湖磁化石浓度在〜9.8?ka时明显增加,在〜5.9?ka时下降,分别与HWP的发生和终止相吻合,并且分别与冰川后变暖引起的营养供应增加和干燥造成的营养不良有关在亚洲内部地区约为6ka。约7.7?ka的两阶段过渡与中等HWP中有机碳的增加有很好的相关性,并表明改善的气候条件导致高质量的养分流入,促进了磁化石的扩散。我们的发现代表了一个极好的湖泊记录,其中磁化石的丰度通过养分的供应而受到日晒驱动的气候变化的控制。

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