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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >A geochronologic framework for the Ziegler Reservoir fossil site, Snowmass Village, Colorado
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A geochronologic framework for the Ziegler Reservoir fossil site, Snowmass Village, Colorado

机译:齐格勒水库化石场的地质年代学框架,科罗拉多州斯诺马斯村

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摘要

The Ziegler Reservoir fossil site near Snowmass Village, Colorado (USA), provides a unique opportunity to reconstruct high-altitude paleoenvironmental conditions in the Rocky Mountains during the Last Interglacial Period. We used four different techniques to establish a chronological framework for the site. Radiocarbon dating of lake organics, bone collagen, and shell carbonate, and in situ cosmogenic Be-10 and Al-26 ages on a boulder on the crest of a moraine that impounded the lake suggest that the ages of the sediments that hosted the fossils are between similar to 140 lea and >45 ka. Uranium-series ages of vertebrate remains generally fall within these bounds, but extremely low uranium concentrations and evidence of open-system behavior limit their utility. Optically stimulated luminescence (OSL) ages (n = 18) obtained from fine-grained quartz maintain stratigraphic order, were replicable, and provide reliable ages for the lake sediments. Analysis of the equivalent dose (D-E) dispersion of the OSL samples showed that the sediments were fully bleached prior to deposition and low scatter suggests that eolian processes were likely the dominant transport mechanism for fine-grained sediments into the lake. The resulting ages show that the fossil-bearing sediments span the latest part of Marine Oxygen Isotope Stage (MIS) 6, all of MIS 5 and MIS 4, and the earliest part of MIS 3. Published by Elsevier Inc. on behalf of University of Washington.
机译:美国科罗拉多州斯诺马斯村附近的齐格勒水库化石遗址为在上一个冰期间重建落基山脉的高海拔古环境条件提供了独特的机会。我们使用了四种不同的技术来为网站建立时间顺序框架。湖泊中有机物,骨胶原和壳碳酸盐的放射性碳测年,以及imp积在湖rest上的巨石上原位宇宙成因的Be-10和Al-26年龄表明,存放化石的沉积物年龄是介于140 lea和> 45 ka之间。脊椎动物的铀系列年龄通常仍在这些范围之内,但是极低的铀浓度和开放系统行为的证据限制了它们的实用性。从细粒石英获得的光激发发光(OSL)年龄(n = 18)保持地层顺序,可复制,并为湖泊沉积物提供了可靠的年龄。对OSL样品的等效剂量(D-E)分散度的分析表明,沉积物在沉积之前已被完全漂白,并且散射较低,这表明风成过程可能是细颗粒沉积物进入湖泊的主要运输机制。结果年龄表明,含化石的沉积物跨越了海洋氧同位素阶段(MIS)6的最新部分,MIS 5和MIS 4的所有部分,以及MIS 3的最早部分。由Elsevier Inc.代表美国大学出版。华盛顿。

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