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High-Resolution Speleothem Record of Climate Variability during the Late Pleistocene from Spring Valley Caverns, Minnesota

机译:明尼苏达州Spring Valley Caverns的晚更新世晚期气候变化的高分辨率Speleothem记录

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摘要

Understanding how the Earth's oceanic and atmospheric systems responded to abrupt climatic forcings in the past is crucial in determining potential effects of anthropogenic climate change. This is of particular importance in the mid-continental United States, an agricultural hub that produces much of the world's corn and soybeans. High resolution paleorecords in the region remain sparse, restricting the predictability of global climate models and limiting our knowledge of atmospheric teleconnections across North America.;This study analyses the growth and stable isotopic concentration of late Pleistocene speleothem samples from Spring Valley Caverns, located in SE Minnesota. Timing of growth for six samples was determined using 230Th dating and confocal microscopy, recording ages between 114--29 ky BP. This places all sample growth within the last glacial period. Sample growth largely correlates with warm conditions in the North Atlantic, indicating elevated temperature and moisture availability. Growth during MIS4 may be due to enhanced anti-cyclonic activity over the Laurentide Ice Sheet, resulting in anomalous southerly moisture transport.;High resolution stable isotope analysis was completed for two samples, showing both long term trends and short term variability. Samples show a steady decrease in delta13C values from 104--29 ky BP, suggesting a transition from C4 to C3 dominated ecosystems consistent with global cooling. However, delta18O values climb steadily throughout this period. This is indicative of drier conditions and an increase in Gulf of Mexico sourced moisture in the region. Short term variability from 64--44 ky BP shows impressive correlation to global paleorecords. North Atlantic cold events are shown as an increase in delta18O values, and North Atlantic warm events as a decrease delta18O values. As delta 18O and delta13C generally covary during this period, elevated delta18O values suggest regional aridity. The transport of Gulf of Mexico summer moisture into the region appears significantly susceptible to changes in North Atlantic climate, most likely through large scale atmospheric systems such as the North Atlantic Oscillation and Pacific-North America teleconnection.;The results of these records agree with a previous study of Spring Valley Caverns from the Holocene (Dasgupta, 2008). This signifies that large scale dynamics present during the last glacial period continue to affect regional climate, and thus these results may prove useful not only in improving our understanding of abrupt climate events during the late Pleistocene but in predicting impacts on the region from anthropogenic warming.
机译:过去,了解地球的海洋和大气系统如何应对突然的气候强迫对于确定人为气候变化的潜在影响至关重要。这在美国中部大陆特别重要,美国是一个农业枢纽,生产世界上许多玉米和大豆。该地区的高分辨率古记录仍然稀疏,这限制了全球气候模型的可预测性,并限制了我们对整个北美的大气遥相关的认识。;本研究分析了位于东南SE的Spring Valley Caverns的晚更新世世辉鞘样品的生长和稳定的同位素浓度。明尼苏达州。使用230Th测年和共聚焦显微镜确定六个样品的生长时间,记录年龄在114--29 ky BP之间。这将所有样本的生长置于上一个冰河期。样品的生长在很大程度上与北大西洋的温暖状况有关,表明温度和水分的利用率较高。 MIS4期间的生长可能是由于在Laurentide冰盖上增强的抗气旋活性,导致了向南的水汽输送异常。对两个样品完成了高分辨率稳定同位素分析,显示了长期趋势和短期变异性。样本显示δ13C值从104--29 ky BP稳步下降,表明从C4到C3为主的生态系统过渡与全球降温一致。但是,在此期间,delta18O值稳定上升。这表明干燥的条件以及该地区源自墨西哥湾的水分增加。从64--44 ky BP的短期变化显示出与全球古记录的惊人相关性。北大西洋的冷事件显示为delta18O值增加,北大西洋的暖事件显示为delta18O值减少。由于在此期间通常会出现δ18O和δ13 C的变化,所以δ18 O值升高表明区域干旱。墨西哥湾夏季水分向该地区的输送似乎很容易受到北大西洋气候变化的影响,很可能是通过大规模大气系统(如北大西洋涛动和太平洋-北美遥相关)实现的;这些记录的结果与以前对全新世春天谷洞穴的研究(Dasgupta,2008年)。这表明在上一个冰川期存在的大规模动力学继续影响区域气候,因此这些结果可能不仅有助于增进我们对更新世晚期突变气候事件的理解,而且有助于预测人为变暖对区域的影响。

著录项

  • 作者

    Nissen, Julia Anne.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Paleoclimate science.
  • 学位 M.S.
  • 年度 2018
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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