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Quaternary Ostracode Paleoecology and Its Link to Climate Change in the Bonneville Basin: A Detailed Study of the Glad800 Core GSL00-4, Great Salt Lake, Utah

机译:邦纳维尔盆地第四纪Ostracode古生态学及其与气候变化的联系:对犹他州大盐湖Glad800核心GSL00-4的详细研究

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摘要

We report the results of a detailed paleoecological study of the Bonneville Basin covering the last ~240,000 years. Our study used fossil ostracodes and a sedimentological record obtained from the August 2000 GLAD800 drilling operation at the Great Salt Lake. We analyzed 125 samples, taken at ~1 meter intervals from core GSL00-4, for ostracodes and other paleoecologic and sedimentological indicators of environmental change. Multivariate analyses applied to the ostracode data indicate an alternation between three major environments at the core site over the cored interval. The environments fluctuated most often between shallow saline, open -water lake conditions (when the lake was high enough to inundate the core site) and salt or freshwater, spring -fed marsh (when the water level was at or lower than the core site). But occasionally, the core site was submerged by deep fresh water. Immediately following deep lake phases, crashes in lake level from rapid desiccation resulted in the deposition of thick evaporite units. These environmental changes are consistent with shoreline studies of regional lake level fluctuations, but provide considerable new detail on both the timing and environmental conditions associated with the various lake phases. Our age model (using dates obtained from ¹⁴C, U- series, tephra and biostratigraphic chronologies) allowed us to associate the core's record of regional paleohydrology to the marine oxygen isotope stages record of global climate change. The core contains high resolution, continuous records for the last three glacial/interglacial sequences. In each case we found that fresh open-water conditions (i.e. lake highstands) correspond with maximum glacial advances, except for the smaller, less intense OIS 4 glaciation, when the lake remained saline. Salt and freshwater marshes were dominant environments for most of the interglacials. However, throughout most of the Quaternary, this basin has contained a shallow, saline open-water lake.
机译:我们报告了过去24万年来对邦纳维尔盆地的详细古生态研究结果。我们的研究使用的是化石ostracodes和2000年8月在大盐湖进行的GLAD800钻井作业获得的沉积学记录。我们分析了以GSL00-4岩心为中心每隔约1米的间隔采集的125个样本,它们是Ostracodes和其他环境变化的古生态和沉积学指标。应用于ostracode数据的多变量分析表明,在核心时间间隔内,核心站点的三个主要环境之间存在交替。环境在盐碱,开阔水域湖泊条件(当湖泊水位高到足以淹没核心地带)和盐或淡水,春季养育的沼泽(水位等于或低于核心地带)之间波动最大。 。但偶尔,核心地点被深淡的海水淹没。在深湖阶段之后,快速干燥导致的湖面崩塌立即导致厚蒸发岩单元的沉积。这些环境变化与海岸线对区域湖泊水位波动的研究一致,但是提供了与各个湖泊阶段相关的时间和环境条件的大量新细节。我们的年龄模型(使用从¹C,U系列,特佛拉和生物地层学年代获得的日期)使我们能够将核心的区域古水文学记录与全球气候变化的海洋氧同位素阶段记录联系起来。核心包含最后三个冰川/冰川间序列的高分辨率连续记录。在每种情况下,我们都发现,在湖泊保持盐碱化的情况下,除了较小,强度较小的OIS 4冰川作用以外,新鲜的开阔水域条件(即湖泊高处)与最大的冰川进展相对应。盐和淡水沼泽是大多数冰川间环境的主要环境。但是,在整个第四纪的大部分时间里,该盆地都包含一个浅水盐湖。

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    Balch Deborah P.;

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  • 年度 2003
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