Constraining the age of the Pleistocene sedimentary infill of Cueva Mayor (Atapuerca, N Spain) through a multi-technique dating approach

IF 1.7 2区 地球科学 Q3 GEOGRAPHY, PHYSICAL Quaternary Geochronology Pub Date : 2024-06-26 DOI:10.1016/j.quageo.2024.101576
V. Martínez-Pillado , M. Demuro , J.E. Ortiz , Q. Shao , L.J. Arnold , M. Duval , H. Cheng , T. Torres , E. Santos , C. Falguères , O. Tombret , N. García , A. Aranburu , A. Gómez-Olivencia , J.L. Arsuaga
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Abstract

Establishing chronologies of archaeological sites by using a single dating method may not always reliably constrain the age of a deposit or a fossil, as potential biases may naturally arise, particularly in complex sedimentary settings such as caves. In this study, we performed a multi-technique dating approach that targets different materials in two caves from the Cueva Mayor-Cueva del Silo karst system, Sierra de Atapuerca, Spain. Two new fossil teeth from lithostratigraphic unit LU4 (GE-I pit) at Galería de las Estatuas have been dated by combined U-series/ESR and Amino Acid Racemisation (AAR) methods. The former provides ages of 117 ± 13 and 87 ± 9 ka that agree with previous dating studies of this Neandertal site, confirming the assignment of level LU4 to Marine Isotope Stage (MIS) 5. In contrast, AAR analyses produce very scattered ages, pointing to significant post-burial chemical modifications in dentine. A first set of ages is presented for the Cata Litario pit at Sala de los Cíclopes, a palaeontological site formed exclusively of cave bear fossils belonging to the Middle Pleistocene species Ursus deningeri. We provide U-series/ESR and AAR ages for two bear teeth from lithostratigraphic unit LU5, and extended-range luminescence ages for the sediment deposits that host, and immediately underlie and overlie, the bear accumulation. Depositional ages of the sediment were obtained using single-grain thermally-transferred optically stimulated luminescence (TT-OSL) dating of individual quartz grains and post-infrared-infrared stimulated luminescence (pIR-IR) dating of K-feldspars. Several speleothems, both in situ and reworked fragments embedded in the different lithostratigraphic units, have additionally been dated by U-series to constrain the timing of the sequence formation. The results indicate that the sediment originally entered the cave between MIS-12 and MIS-10 (444 ± 28 ka to 367 ± 32 ka). Nevertheless, the AAR and U-series/ESR fossil ages, as well as some of the speleothem fragment ages from LUs 5 and 6 are significantly younger. Leaving aside methodologically questionable results for one of the bear tooth samples, the most reliable AAR and U-Series/ESR ages range from 287 ± 23 ka to 256 ± 24, while the speleothem fragments indicate several formation episodes between 444 ± 19 and 284 ± 8 ka. The apparent difference between the U-Series/ESR ages on the fossils and the luminescence ages on the host sediment are not likely to be wholly explained by uncertainties on uranium uptake modelling or gamma dose rate evaluation, and thus is most likely related to taphonomic processes or a complex site formation history.

The presence of fossils and eroded speleothem clasts of younger age within these levels is consistent with either an event of prior erosion, transport and resedimentation of LUs 4, 5 and 6, and/or a complex post-depositional mixing history for the stratigraphic sequence at Cata Litario. This study highlights the importance of using different dating methods to reconstruct reliable chronological frameworks, and to understand the geological factors that can affect the dated materials. This includes the accumulation and taphonomic histories of fossils, post-depositional mixing or reworking processes affecting sediments during the residence time within the karst system.

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通过多技术测年方法确定马约尔湾(西班牙北部阿塔普埃尔卡)更新世沉积填充物的年龄
使用单一的测年方法确定考古遗址的年代不一定能可靠地确定沉积物或化石的年龄,因为可能会自然产生偏差,尤其是在洞穴等复杂的沉积环境中。在这项研究中,我们针对西班牙阿塔普埃尔卡山脉 Cueva Mayor-Cueva del Silo 岩溶系统的两个洞穴中的不同材料,采用了一种多技术测年方法。Galería de las Estatuas 的 LU4 岩石地层单元(GE-I 矿坑)中的两颗新牙齿化石已通过 U 系列/ESR 和氨基酸族化(AAR)方法测定了年代。前者提供的年代为 117 ± 13 ka 和 87 ± 9 ka,与之前对这一新石器时代遗址的年代研究结果一致,证实了 LU4 层被归入海洋同位素阶段(MIS)5。相比之下,AAR 分析得出的年龄非常分散,表明牙质在埋葬后发生了重大的化学变化。我们提供了 Sala de los Cíclopes 的 Cata Litario 洞穴的第一组年龄,这是一个完全由属于中更新世物种 Ursus deningeri 的穴熊化石组成的古生物遗址。我们提供了岩层单元 LU5 中两颗熊牙齿的 U 系列/ESR 和 AAR 年龄,以及熊堆积物所在沉积物、其下和其上的扩展范围发光年龄。沉积物的沉积年龄是通过对单个石英颗粒进行单颗粒热转移光激发发光(TT-OSL)测年和对 K 长石进行后红外激发发光(pIR-IR)测年获得的。此外,还对嵌入不同岩层单位中的几块原位和再加工碎片进行了 U 系列测年,以确定岩层序列的形成时间。结果表明,沉积物最初进入洞穴的时间介于 MIS-12 与 MIS-10 之间(444 ± 28 ka 至 367 ± 32 ka)。尽管如此,AAR 和 U 系列/ESR 化石年龄,以及 5 号和 6 号地层单元的一些岩浆碎片年龄要年轻得多。撇开其中一个熊齿样本在方法上值得商榷的结果不谈,最可靠的 AAR 和 U 系列/ESR 年龄在 287 ± 23 ka 到 256 ± 24 之间,而岩浆碎片则表明在 444 ± 19 ka 到 284 ± 8 ka 之间有几次形成过程。化石上的铀系列/ESR 年龄与主沉积物上的发光年龄之间的明显差异不可能完全由铀吸收模型或伽马剂量率评估的不确定性所解释,因此很可能与岩石学过程或复杂的遗址形成历史有关。在这些地层中出现的化石和被侵蚀的年龄较小的岩浆岩碎屑,与地层单元 4、5 和 6 先前的侵蚀、搬运和再沉积过程,以及/或者卡塔利塔里奥地层序列复杂的沉积后混合历史相吻合。这项研究强调了使用不同测年方法重建可靠年代框架的重要性,以及了解可能影响测年材料的地质因素的重要性。这些因素包括化石的堆积和移生历史、沉积后的混合过程或在岩溶系统中停留期间影响沉积物的再加工过程。
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来源期刊
Quaternary Geochronology
Quaternary Geochronology 地学-地球化学与地球物理
CiteScore
4.40
自引率
22.20%
发文量
130
审稿时长
20 weeks
期刊介绍: Quaternary Geochronology is an international journal devoted to the publication of the highest-quality, peer-reviewed articles on all aspects of dating methods applicable to the Quaternary Period - the last 2.6 million years of Earth history. Reliable ages are fundamental to place changes in climates, landscapes, flora and fauna - including the evolution and ecological impact of humans - in their correct temporal sequence, and to understand the tempo and mode of geological and biological processes.
期刊最新文献
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